Polynucleotides and polypeptide sequences involved in the process of bone remodeling
09695419 ยท 2017-07-04
Assignee
Inventors
- Roy Rabindranauth Sooknanan (Beaconsfield, CA)
- Gilles Bernard Tremblay (La Prairie, CA)
- Mario Filion (Longueuil, CA)
Cpc classification
A61P29/00
HUMAN NECESSITIES
C07K14/51
CHEMISTRY; METALLURGY
A61P1/02
HUMAN NECESSITIES
A61P19/08
HUMAN NECESSITIES
A61P43/00
HUMAN NECESSITIES
C12Q1/6883
CHEMISTRY; METALLURGY
A61P35/00
HUMAN NECESSITIES
C12N15/113
CHEMISTRY; METALLURGY
A61P15/08
HUMAN NECESSITIES
A61P15/00
HUMAN NECESSITIES
International classification
C07K14/51
CHEMISTRY; METALLURGY
A61K39/395
HUMAN NECESSITIES
C12N15/113
CHEMISTRY; METALLURGY
G01N33/50
PHYSICS
Abstract
This invention relates, in part, to unique and newly identified genetic polynucleotides involved in the process of bone remodeling, variants and derivatives of the polynucleotides and corresponding polypeptides, uses of the polynucleotides, polypeptides, variants and derivatives, and methods and compositions for the amelioration of symptoms caused by bone remodeling disorders. Disclosed in particular are the isolation and identification of polynucleotides polypeptides variants and derivatives involved in osteoclast activity, validation of the identified polynucleotides for their potential as therapeutic targets and use of the polynucleotides, polypeptides, variants and derivatives for the amelioration of disease states and research purposes.
Claims
1. A method for treating a bone disease in an individual in need thereof, the method comprising administering a compound capable of interfering with the activity or expression of a polypeptide encoded by SEQ ID NO.:1, wherein the compound comprises a nucleic acid sequence having a portion substantially complementary to SEQ ID NO.:1.
2. The method of claim 1, wherein said mammal suffers from a condition selected from the group consisting of osteoporosis, osteopenia, osteomalacia, hyperparathyroidism, hyperthyroidism, hypogonadism, thyrotoxicosis, systemic mastocytosis, adult hypophosphatasia, hyperadrenocorticism, osteogenesis imperfecta, Paget's disease, Cushing's disease/syndrome, Turner syndrome, Gaucher disease, Ehlers-Danlos syndrome, Marfan's syndrome, Menkes' syndrome, Fanconi's syndrome, multiple myeloma, hypercalcemia, hypocalcemia, arthritides, periodontal disease, rickets, fibrogenesis imperfecta ossium, osteosclerotic disorders such as pycnodysostosis and damage caused by macrophage-mediated inflammatory processes.
3. The method of claim 1, wherein the nucleic acid sequence comprises deoxyribonucleotides.
4. The method of claim 1, wherein the nucleic acid sequence comprises ribonucleotides.
5. The method of claim 1, wherein the compound is an antisense, a siRNA, a shRNA or a ribozyme.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF ILLUSTRATIVE EMBODIMENTS
(42) The applicant employed a carefully planned strategy to identify and isolate genetic sequences involved in osteoclastogenesis and bone remodeling. The process involved the following steps: 1) preparation of highly representative cDNA libraries using mRNA isolated from precursors and differentiated intermediate and mature osteoclasts of human origin; 2) isolation of sequences upregulated during osteoclastogenesis; 3) identification and characterization of upregulated sequences; 4) selection of upregulated sequences for tissue specificity; and 5) determination of knock-down effects on osteoclastogenesis. The results discussed in this disclosure demonstrate the advantage of targeting osteoclast genes that are specific to this differentiated cell type and provide a more efficient screening method when studying the genetic basis of diseases and disorders. Genes that are known to have a role in other areas of biology have been shown to play a critical role in osteoclastogenesis and osteoclast function. Genes that are known but have not had a role assigned to them until the present disclosure have also been isolated and shown to have a critical role in osteoclastogenesis and osteoclast function. Finally, novel genes have been identified and play a role, however, applicant reserves their disclosure until further study has been completed.
(43) The present invention is illustrated in further details below in a non-limiting fashion.
(44) AMaterial and Methods
(45) Commercially available reagents referred to in the present disclosure were used according to supplier's instructions unless otherwise indicated. Throughout the present disclosure certain starting materials were prepared as follows:
(46) BPreparation of Osteoclast Differentiated Cells
(47) The RAW 264.7 (RAW) osteoclast precursor cell line and human precursor cells (peripheral blood mononuclear cells or CD34+ progenitors) are well known in the art as murine and human models of osteoclastogenesis. These murine and human osteoclasts are therefore excellent sources of materials for isolating and characterizing genes specialized for osteoclast function.
(48) Human primary osteoclasts were differentiated from G-CSF-mobilized peripheral blood mononuclear cells (Cambrex, East Rutherford, N.J.) as described by the supplier in the presence of 35 ng/ml M-CSF and 100 ng/ml RANK ligand. Multinucleated TRAP-staining osteoclasts were visible by 11-14 days. Osteoclasts were also derived from human osteoclasts precursor cells (CD34+ progenitors) (Cambrex, East Rutherford, N.J.) and cultured as described by the supplier. In the latter case, osteoclasts were obtained after 7 days.
(49) RAW cells were purchased from American Type Culture Collection and maintained in high glucose DMEM containing 10% fetal bovine serum and antibiotics. The cells were sub-cultured bi-weekly to a maximum of 10-12 passages. For osteoclast differentiation experiments, RAW cells were seeded in 96-well plates at a density of 410.sup.3 cells/well and allowed to plate for 24 h. Differentiation was induced in high glucose DMEM, 10% charcoal-treated foetal bovine serum (Hyclone, Logan, Utah), 0.05% BSA, antibiotics, 10 ng/ml macrophage colony stimulating factor (M-CSF), and 100 ng/ml receptor activator of NF-kB (RANK) ligand. The plates were re-fed on day 3 and osteoclasts were clearly visible by day 4. Typically, the cells were stained for tartrate-resistant acid phosphatase (TRAP) on day 4 or 5 unless otherwise indicated. For TRAP staining, the cells were washed with PBS and fixed in 10% formaldehyde for 1 h. After two PBS washes, the cells were rendered lightly permeable in 0.2% Triton X-100 in PBS for 5 min before washing in PBS. Staining was conducted at 37 C. for 20-25 min in 0.01% Naphtol AS-MX phosphate, 0.06% Fast Red Violet, 50 mM sodium tartrate, 100 mM sodium acetate, pH 5.2. Cells were visualized microscopically.
(50) CMethod of Isolating Differentially Expressed mRNA
(51) Key to the discovery of differentially expressed sequences unique to osteoclasts is the use of the applicant's patented STAR technology (Subtractive Transcription-based Amplification of mRNA; U.S. Pat. No. 5,712,127 Malek et al., issued on Jan. 27, 1998). In this procedure, mRNA isolated from intermediate and mature osteoclasts is used to prepare tester RNA, which is hybridized to complementary single-stranded driver DNA prepared from osteoclast precursor mRNA and only the un-hybridized tester RNA is recovered, and used to create cloned cDNA libraries, termed subtracted libraries. Thus, the subtracted libraries are enriched for differentially expressed sequences inclusive of rare and novel mRNAs often missed by micro-array hybridization analysis. These rare and novel mRNA are thought to be representative of important gene targets for the development of better diagnostic and therapeutic strategies.
(52) The clones contained in the enriched subtracted libraries are identified by DNA sequence analysis and their potential function assessed by acquiring information available in public databases (NCBI and GeneCard). The non-redundant clones are then used to prepare DNA micro-arrays, which are used to quantify their relative differential expression patterns by hybridization to fluorescent cDNA probes. Two classes of cDNA probes may be used, those which are generated from either RNA transcripts prepared from the same subtracted libraries (subtracted probes) or from mRNA isolated from different osteoclast samples (standard probes). The use of subtracted probes provides increased sensitivity for detecting the low abundance mRNA sequences that are preserved and enriched by STAR. Furthermore, the specificity of the differentially expressed sequences to osteoclast is measured by hybridizing radio-labeled probes prepared from each selected sequence to macroarrays containing RNA from different osteoclast samples and different normal human tissues. Additionally, Northern blot analysis is performed so as to confirm the presence of one or more specific mRNA species in the osteoclast samples. Following this, the full-length cDNAs representative of the mRNA species and/or spliced variants are cloned in E. coli DH10B.
(53) A major challenge in gene expression profiling is the limited quantities of RNA available for molecular analysis. The amount of RNA isolated from many osteoclast samples or human specimens (needle aspiration, laser capture micro-dissection (LCM) samples and transfected cultured cells) is often insufficient for preparing: 1) conventional tester and driver materials for STAR; 2) standard cDNA probes for DNA micro-array analysis; 3) RNA macroarrays for testing the specificity of expression: 4) Northern blots and; 5) full-length cDNA clones for further biological validation and characterization etc. Thus, the applicant has developed a proprietary technology called RAMP (RNA Amplification Procedure) (U.S. patent application Ser. No. 11/000,958 published under No. US 2005/0153333A1 on Jul. 14, 2005 and entitled Selective Terminal Tagging of Nucleic Acids), which linearly amplifies the mRNA contained in total RNA samples yielding microgram quantities of amplified RNA sufficient for the various analytical applications. The RAMP RNA produced is largely full-length mRNA-like sequences as a result of the proprietary method for adding a terminal sequence tag to the 3-ends of single-stranded cDNA molecules, for use in linear transcription amplification. Greater than 99.5% of the sequences amplified in RAMP reactions show <2-fold variability and thus, RAMP provides unbiased RNA samples in quantities sufficient to enable the discovery of the unique mRNA sequences involved in osteoclastogenesis.
(54) DPreparation of Human Osteoclasts Subtracted Library
(55) Two human primary precursor cells from two different donors (Cambrex, East Rutherford, N.J.), and the corresponding intermediate (day 3 and day 7) and mature (days 11-14) osteoclasts were prepared as described above. Isolation of cellular RNA followed by mRNA purification from each was performed using standard methods (Qiagen, Mississauga, ON). Following the teachings of Malek et al. (U.S. Pat. No. 5,712,127), 2 g of poly A+mRNA from each sample were used to prepare highly representative (>210.sup.6 CFU) cDNA libraries in specialized plasmid vectors necessary for preparing tester and driver materials. In each case, first-strand cDNA was synthesized using an oligo dT.sub.11 primer with 3 locking nucleotides (e.g., A, G or C) and containing a Not I recognition site. Next, second-strand cDNA synthesis was performed according to the manufacturer's procedure for double-stranded cDNA synthesis (Invitrogen, Burlington, ON) and the resulting double-stranded cDNA ligated to linkers containing an Asc I recognition site (New England Biolabs, Pickering, ON). The double-stranded cDNAs were then digested with Asc I and Not I restriction enzymes (New England Biolabs, Pickering, ON), purified from the excess linkers using the cDNA fractionation column from Invitrogen (Burlington, ON) as specified by the manufacturer and each ligated into specialized plasmid vectorsp14 (SEQ. ID. NO:36) and p17+(SEQ. ID. NO:37) used for preparing tester and driver materials respectively. Thereafter, the ligated cDNAs were transformed into E. coli DH10B resulting in the desired cDNA libraries (RAW 264.7-precursor-p14, RAW 264.7-precursor-p17+, RAW 264.7-osteoclasts-p14 and RAW 264.7-osteoclasts-p17+). The plasmid DNA pool for each cDNA library was purified and a 2-g aliquot of each linearized with Not I restriction enzyme. In vitro transcription of the Not I digested p14 and p17+ plasmid libraries was then performed with T7 RNA polymerase and sp6 RNA polymerase respectively (Ambion, Austin, Tex.).
(56) Next, in order to prepare 3-represented tester and driver libraries, a 10-g aliquot of each of the in vitro synthesized RNA was converted to double-stranded cDNA by performing first-strand cDNA synthesis as described above followed by primer-directed (primer OGS 77 for p14 (SEQ. ID. NO:40) and primer OGS 302 for p17+ (SEQ. ID. NO:41)) second-strand DNA synthesis using Advantage-2 Taq polymerase (BD Biosciences Clontech, Mississauga, ON). The sequences corresponding to OGS 77 and OGS 302 were introduced into the in vitro synthesized RNA by way of the specialized vectors used for preparing the cDNA libraries. Thereafter, 6 1-g aliquots of each double-stranded cDNA was digested individually with one of the following 4-base recognition restriction enzymes Rsa I, Sau3A1, Mse I, Msp I, MinPI I and Bsh 1236I (MBI Fermentas, Burlington, ON), yielding up to six possible 3-fragments for each RNA species contained in the cDNA library. Following digestion, the restriction enzymes were inactivated with phenol and the set of six reactions pooled. The restriction enzymes sites were then blunted with T4 DNA polymerase and ligated to linkers containing an Asc I recognition site. Each linker-adapted pooled DNA sample was digested with Asc I and Not I restriction enzymes, desalted and ligated to specialized plasmid vectors, p14 and p17 (p17 plasmid vector is similar to the p17+ plasmid vector except for the sequence corresponding to SEQ. ID. NO:41), and transformed into E. coli DH10B. The plasmid DNA pool for each p14 and p17 3-represented library was purified (Qiagen, Mississauga, ON) and a 2-g aliquot of each digested with Not I restriction enzyme, and transcribed in vitro with either T7 RNA polymerase or sp6 RNA polymerase (Ambion, Austin, Tex.). The resulting p14 3-represented RNA was used directly as tester RNA whereas, the p17 3-represented RNA was used to synthesize first-strand cDNA as described above, which then served as driver DNA. Each driver DNA reaction was treated with RNase A and RNase H to remove the RNA, phenol extracted and desalted before use.
(57) The following 3-represented libraries were prepared:
(58) Tester 1 (donor 1-day 3)human intermediate osteoclast-3 in p14
(59) Tester 2 (donor 1-day 7human intermediate osteoclast)-3 in p14
(60) Tester 3 (donor 1-day 11human mature osteoclast)-3 in p14
(61) Tester 4 (donor 2-day 3human intermediate osteoclast)-3 in p14
(62) Tester 5 (donor 2-day 7human intermediate osteoclast)-3 in p14
(63) Tester 6 (donor 2-day 13human mature osteoclast)-3 in p14
(64) Driver 1 (donor 1-day 3)human precursor-3 in p17
(65) Driver 2 (donor 2-day 3)human precursor-3 in p17
(66) The tester RNA samples were subtracted following the teachings of U.S. Pat. No. 5,712,127 with the corresponding driver DNA in a ratio of 1:100 for either 1- or 2-rounds following the teachings of Malek et al. (U.S. Pat. No. 5,712,127). Additionally, control reactions containing tester RNA and no driver DNA, and tester RNA plus driver DNA but no RNase H were prepared. The tester RNA remaining in each reaction after subtraction was converted to double-stranded DNA, and a volume of 5% removed and amplified in a standard PCR reaction for 30-cycles for analytical purposes. The remaining 95% of only the driver plus RNase H subtracted samples were amplified for 4-cycles in PCR, digested with Asc I and Not I restriction enzymes, and one half ligated into the pCATRMAN (SEQ. ID. NO:38) plasmid vector and the other half, into the p20 (SEQ. ID. NO:39) plasmid vector. The ligated materials were transformed into E. coli DH10B and individual clones contained in the pCATRMAN libraries were picked for further analysis (DNA sequencing and hybridization) whereas, clones contained in each p20 library were pooled for use as subtracted probes. Each 4-cycles amplified cloned subtracted library contained between 25,000 and 40,000 colonies.
(67) The following cloned subtracted libraries were prepared: SL90-tester 1 (day 3 osteoclast) minus driver 1 (precursor) (1-round) in pCATRMAN; SL91-tester 2 (day 7 osteoclast) minus driver 1 (precursor) (1-round) in pCATRMAN; SL92-tester 3 (day 11 osteoclast) minus driver 1 (precursor) (1-round) in pCATRMAN; SL108-tester 1 (day 3 osteoclast) minus driver 1 (precursor) (2-rounds) in pCATRMAN; SL109-tester 2 (day 7 osteoclast) minus driver 1 (precursor) (2-rounds) in pCATRMAN; SL110-tester 3 (day 11 osteoclast) minus driver 1 (precursor) (2-rounds) in pCATRMAN; SL93-tester 4 (day 3 osteoclast) minus driver 2 (precursor) (1-round) in pCATRMAN; SL94-tester 5 (day 7 osteoclast) minus driver 2 (precursor) (1-round) in pCATRMAN; SL95-tester 6 (day 13 osteoclast) minus driver 2 (precursor) (1-round) in pCATRMAN; SL87-tester 4 (day 3 osteoclast) minus driver 2 (precursor) (2-rounds) in pCATRMAN: SL88-tester 5 (day 7 osteoclast) minus driver 2 (precursor) (2-rounds) in pCATRMAN; SL89-tester 6 (day 11 osteoclast) minus driver 2 (precursor) (2-rounds) in pCATRMAN
(68) A 5-L aliquot of the 30-cycles PCR amplified subtracted materials described above were visualized on a 1.5% agarose gel containing ethidium bromide and then transferred to Hybond N+ (Amersham Biosciences, Piscataway, N.J.) nylon membrane for Southern blot analysis. Using radiolabeled probes specific to the CTSK (cathepsin K; NM_000396.2) gene, which is known to be upregulated in osteoclasts, and GAPDH (glyceraldehyde-3-phosphate dehydrogenase; M32599.1), which is a non-differentially expressed house-keeping gene, it was evident that there was subtraction of GAPDH but not CTSK. Based on these results, it was anticipated that the subtracted libraries would be enriched for differentially expressed upregulated sequences.
(69) ESequence Identification and Annotation of Clones Contained in the Subtracted Libraries:
(70) A total of 6,912 individual colonies contained in the pCATRMAN subtracted libraries (SL87-95 and SL108-110) described above were randomly picked using a Qbot (Genetix Inc., Boston, Mass.) into 60 L of autoclaved water. Then, 42 L of each was used in a 100-L standard PCR reaction containing oligonucleotide primers, OGS 1 and OGS 142 and amplified for 40-cycles (94 C. for 10 minutes, 40 (94 C. for 40 seconds, 55 C. for 30 seconds and 72 C. for 2 minutes) followed by 72 C. for 7 minutes) in 96-wells microtitre plates using HotStart Taq polymerase (Qiagen, Mississauga, ON). The completed PCR reactions were desalted using the 96-well filter plates (Corning) and the amplicons recovered in 100 L 10 mM Tris (pH 8.0). A 5-L aliquot of each PCR reaction was visualized on a 1.5% agarose gel containing ethidium bromide and only those reactions containing a single amplified product were selected for DNA sequence analysis using standard DNA sequencing performed on an ABI 3100 instrument (Applied Biosystems, Foster City, Calif.). Each DNA sequence obtained was given a Sequence Identification Number and entered into a database for subsequent tracking and annotation.
(71) Each sequence was selected for BLAST analysis of public databases (e.g. NCBI). Absent from these sequences were the standard housekeeping genes (GAPDH, actin, most ribosomal proteins etc.), which was a good indication that the subtracted library was depleted of at least the relatively abundant non-differentially expressed sequences.
(72) Once sequencing and annotation of the selected clones were completed, the next step involved identifying those sequences that were actually upregulated in osteoclasts compared to precursors.
(73) FHybridization Analysis for Identifying Upregulated Sequences
(74) The PCR amplicons representing the annotated sequences from the pCATRMAN libraries described above were used to prepare DNA microarrays. The purified PCR amplicons contained in 70 L of the PCR reactions prepared in the previous section was lyophilized and each reconstituted in 20 L of spotting solution comprising 3SSC and 0.1% sarkosyl. DNA micro-arrays of each amplicon in triplicate were then prepared using CMT-GAP2 slides (Corning, Corning, N.Y.) and the GMS 417 spotter (Affymetrix, Santa Clara, Calif.).
(75) The DNA micro-arrays were then hybridized with either standard or subtracted cy3 and cy5 labelled cDNA probes as recommended by the supplier (Amersham Biosciences, Piscataway, N.J.). The standard cDNA probes were synthesized using RAMP amplified RNA prepared from the different human osteoclast samples and the corresponding precursors. It is well known to the skilled artisan that standard cDNA probes only provide limited sensitivity of detection and consequently, low abundance sequences contained in the cDNA probes are usually missed. Thus, the hybridization analysis was also performed using cy3 and cy5 labelled subtracted cDNA probes prepared from subtracted libraries representing the different tester and driver materials. These subtracted libraries may be enriched for low abundance sequences as a result of following the teachings of Malek et al., and therefore, may provide increased detection sensitivity.
(76) All hybridization reactions were performed using the dye-swap procedure as recommended by the supplier (Amersham Biosciences, Piscataway, N.J.) and approximately 500 putatively differentially expressed upregulated (>2-fold) sequences were selected for further analysis.
(77) GDetermining Osteoclast Specificity of the Differentially Expressed Sequences Identified:
(78) The differentially expressed sequences identified in Section F for the different human osteoclast subtracted libraries were tested for osteoclast specificity by hybridization to nylon membrane-based macroarrays. The macroarrays were prepared using RAMP amplified RNA from human precursors and osteoclasts (intermediate and mature) of six independent experiments from 4 different donors (3 males and 1 female), and 30 normal human tissues (adrenal, liver, lung, ovary, skeletal muscle, heart, cervix, thyroid, breast, placenta, adrenal cortex, kidney, vena cava, fallopian tube, pancreas, testicle, jejunum, aorta, esophagus, prostate, stomach, spleen, ileum, trachea, brain, colon, thymus, small intestine, bladder and duodenum) purchased commercially (Ambion, Austin, Tex.). Because of the limited quantities of mRNA available for many of these samples, it was necessary to first amplify the mRNA using the RAMP methodology. Each amplified RNA sample was reconstituted to a final concentration of 250 ng/L in 3SSC and 0.1% sarkosyl in a 96-well microtitre plate and 1 L spotted onto Hybond N+ nylon membranes using the specialized MULTI-PRINT apparatus (VP Scientific, San Diego, Calif.), air dried and UV-cross linked. A total of 400 different sequences selected from SL87-95 and SL108-110 were individually radiolabeled with -.sup.32P-dCTP using the random priming procedure recommended by the supplier (Amersham, Piscataway, N.J.) and used as probes on the macroarrays. Hybridization and washing steps were performed following standard procedures well known to those skilled in the art.
(79) Of the 500 sequences tested, approximately 85% were found to be upregulated in all of the osteoclast RNA samples that were used to prepare the macroarrays. However, many of these sequences were also readily detected in a majority of the different normal human tissues. Based on these results, those sequences that appeared to be associated with experimental variability and those that were detected in many of the other human tissues at significantly elevated levels were eliminated. Consequently, only 35 sequences, which appeared to be upregulated and highly osteoclast-specific, were selected for biological validation studies. Included in this set of 35 genes were 4 (SEQ. ID. NOs. 30-33) where there was a significant upregulation in mature osteoclasts compared to most normal tissues but because the expression of these genes were overall lower in the precursor cells, they appeared to be elevated in the normal tissues after quantitation
(80)
(81) SEQ. ID. NO:1:
(82) SEQ. ID. NO:1 (Table 5) corresponds to a previously identified gene that encodes a hypothetical protein, LOC284266 with an unknown function (see Table 1). We have demonstrated that this gene is markedly upregulated in intermediate and mature osteoclast compared to precursor cells and other normal human tissues (
(83) SEQ. ID. NO:2:
(84) SEQ. ID. NO:2 (Table 5) corresponds to a previously identified gene that encodes a predicted open reading frame, C6orf82 with an unknown function (see Table 1). We have demonstrated that this gene is markedly upregulated in intermediate and mature osteoclast compared to precursor cells and other normal human tissues (
(85) SEQ. ID. NO:3:
(86) SEQ. ID. NO:3 (Table 5) corresponds to a previously identified gene that encodes a hypothetical protein, LOC133308 with an unknown function (see Table 1) but may be involved in the process of pH regulation. We have demonstrated that this gene is markedly upregulated in intermediate and mature osteoclast compared to precursor cells and other normal human tissues (
(87) SEQ. ID. NO:4:
(88) SEQ. ID. NO:4 (Table 5) corresponds to a previously identified gene that encodes a hypothetical protein, LOC116211 with an unknown function (see Table 1). We have demonstrated that this gene is markedly upregulated in intermediate and mature osteoclast compared to precursor cells and other normal human tissues (
(89) SEQ. ID. NO:5
(90) SEQ. ID. NO:5 (Table 5) corresponds to a previously identified gene that encodes a predicted protein, LOC151194 (similar to hepatocellular carcinoma-associated antigen HCA557b), with unknown function (see Table 1). We have demonstrated that this gene is markedly upregulated in intermediate and mature osteoclast compared to precursor cells and other normal human tissues (
(91) SEQ. ID. NO:6:
(92) SEQ. ID. NO:6 (Table 5) corresponds to a previously identified gene that encodes a protein, chemokine (C-X-C motif) ligand 5 (CXCL5), which is an inflammatory chemokine that belongs to the CXC chemokine family (see Table 1). We have demonstrated that this gene is significantly upregulated in mature osteoclast compared to precursor cells and other normal human tissues (
(93) SEQ. ID. NO:7:
(94) SEQ. ID. NO:7 (Table 5) corresponds to a previously identified gene that encodes a protein, ATPase, H+ transporting, lysosomal accessory protein 2 (ATP6AP2), which is associated with adenosine triphosphatases (ATPases). Proton-translocating ATPases have fundamental roles in energy conservation, secondary active transport, acidification of intracellular compartments, and cellular pH homeostasis (see Table 1). We have demonstrated that this gene is markedly upregulated in mature osteoclast compared to precursor cells and other normal human tissues (
(95) SEQ. ID. NO:8
(96) SEQ. ID. NO:8 (Table 5) corresponds to a previously identified gene that encodes a protein, ubiquitin-specific protease 12-like 1 (USP12), which is associated with ubiquitin-dependent protein catabolism (see Table 1) We have demonstrated that this gene is markedly upregulated in intermediate and mature osteoclast compared to precursor cells and other normal human tissues (
(97) SEQ. ID. NO:9
(98) SEQ. ID. NO:9 (Table 5) corresponds to a previously identified gene that encodes a protein, Ubiquitin-conjugating enzyme E2E 1 (UBC4/5 homolog, yeast) (UBE2E1), which is associated with ubiquitin-dependent protein catabolism (see Table 1). So far, there are 2 transcript variants and protein isoforms reported for this gene. We have demonstrated that this gene is significantly upregulated in mature osteoclast compared to precursor cells and other normal human tissues (
(99) SEQ. ID. NO:10
(100) SEQ. ID. NO:10 (Table 5) corresponds to a previously identified gene that encodes a protein, Emopamil binding protein-like (EBPL), which may have cholestenol delta-isomerase activity (see Table 1). We have demonstrated that this gene is markedly upregulated in intermediate and mature osteoclast compared to precursor cells and other normal human tissues (
(101) SEQ. ID. NO:11
(102) SEQ. ID. NO:11 (Table 5) corresponds to a previously identified gene that encodes a protein, development and differentiation enhancing factor 1 (DDEF1), which may be involved in cell motility and adhesion (see Table 1). We have demonstrated that this gene is markedly upregulated in intermediate and mature osteoclast compared to precursor cells and other normal human tissues (
(103) SEQ. ID. NO:12
(104) SEQ. ID. NO:12 (Table 5) corresponds to a previously identified gene that encodes a protein, member 7 of the SLAM family (SLAM7), which may have receptor activity and involved in cell adhesion but still not fully characterized (see Table 1). We have demonstrated that this gene is markedly upregulated in mature osteoclast compared to precursor cells and other normal human tissues (
(105) SEQ. ID. NO:13
(106) SEQ. ID. NO:13 (Table 5) corresponds to a previously identified gene that encodes a protein, Ubiquitin-conjugating enzyme E2E 3 (UBC4/5 homolog, yeast) (UBE2E3), which is associated with ubiquitin-dependent protein catabolism (see Table 1). There are 2 transcript variants documented so far, which code for the same protein isofrom. We have demonstrated that this gene is markedly upregulated in mature osteoclast compared to precursor cells and other normal human tissues (
(107) SEQ. ID. NO:14
(108) SEQ. ID. NO:14 (Table 5) corresponds to a previously identified gene that encodes a protein, Galanin (GAL), which is associated with neuropeptide hormone activity (see Table 1). We have demonstrated that this gene is markedly upregulated in intermediate and mature osteoclast compared to precursor cells and other normal human tissues except for colon (
(109) SEQ. ID. NO:15
(110) SEQ. ID. NO:15 (Table 5) corresponds to a previously identified gene that encodes a protein, Cytokine-like nuclear factor n-pac (N-PAC), which may have oxireductase activity (see Table 1). We have demonstrated that this gene is markedly upregulated in intermediate and mature osteoclast compared to precursor cells and other normal human tissues (
(111) SEQ. ID. NO:16
(112) SEQ. ID. NO:16 (Table 5) corresponds to a previously identified gene that encodes a protein, Integrin alpha X (antigen CD11C (p150), alpha polypeptide) (ITGAX), which is involved in cell adhesion and ion binding (see Table 1). We have demonstrated that this gene is markedly upregulated in intermediate and mature osteoclast compared to precursor cells and other normal human tissues (
(113) SEQ. ID. NO:17
(114) SEQ. ID. NO:17 (Table 5) corresponds to a previously identified gene that encodes a protein, Ankylosis, progressive homolog (mouse) (ANKH), which is involved in regulating pyrophosphate levels, suggested as a possible mechanism regulating tissue calcification (see Table 1). We have demonstrated that this gene is markedly upregulated in intermediate and mature osteoclast compared to precursor cells and other normal human tissues (
(115) SEQ. ID. NO:18
(116) SEQ. ID. NO:18 (Table 5) corresponds to a previously identified gene that encodes a protein, ATPase, H+ transporting, lysosomal 70 kD, V1 subunit A, which is involved in hydrogen-transporting ATPase activity, rotational mechanism (see Table 1). We have demonstrated that this gene is markedly upregulated in mature osteoclast compared to precursor cells and other normal human tissues (
(117) SEQ. ID. NO:19
(118) SEQ. ID. NO:19 (Table 5) corresponds to a previously identified gene that encodes a predicted open reading frame coding for protein, FLJ10874 (chromosome 1 open reading frame 75), which has no known function (see Table 1). We have demonstrated that this gene is significantly upregulated in mature osteoclast compared to precursor cells and other normal human tissues (
(119) SEQ. ID. NO:20
(120) SEQ. ID. NO:20 (Table 5) corresponds to a previously identified gene that encodes a protein, Integrin beta 1 binding protein 1 (ITGB1BP1), which has an important role during integrin-dependent cell adhesion (see Table 1). Two transcript variants and protein isoforms for this gene has been isolated. We have demonstrated that this gene is significantly upregulated in mature osteoclast compared to precursor cells and other normal human tissues (
(121) SEQ. ID. NO:21
(122) SEQ. ID. NO:21 (Table 5) corresponds to a previously identified gene that encodes a protein, Thioredoxin-like 5 (TXNL5), which has no known function (see Table 1). We have demonstrated that this gene is significantly upregulated in intermediate and mature osteoclast compared to precursor cells and other normal human tissues with the exception of esophagus (
(123) SEQ. ID. NO:22
(124) SEQ. ID. NO:22 (Table 5) corresponds to a previously identified gene that encodes a protein, C-type lectin domain family 4, member E (CLECSF9), which has no known specific function (see Table 1). Members of this family share a common protein fold and have diverse functions, such as cell adhesion, cell-cell signaling, glycoprotein turnover, and roles in inflammation and immune response. We have demonstrated that this gene is significantly upregulated in mature osteoclast compared to precursor cells and other normal human tissues with the exception of lung and spleen (
(125) SEQ. ID. NO:23
(126) SEQ. ID. NO:23 (Table 5) corresponds to a previously identified gene that encodes a protein, RAB33A, member RAS oncogene family (RAB33A), which has GTPase activity (see Table 1). We have demonstrated that this gene is significantly upregulated in intermediate and mature osteoclast compared to precursor cells and other normal human tissues with the exception of brain (
(127) SEQ. ID. NO:24
(128) SEQ. ID. NO:24 (Table 5) corresponds to a previously identified gene that encodes a protein, Down syndrome critical region gene 1 (DSCR1), which interacts with calcineurin A and inhibits calcineurin-dependent signaling pathways, possibly affecting central nervous system development (see Table 1). There are 3 transcript variants and protein isofroms isolated so far. We have demonstrated that this gene is markedly upregulated in intermediate and mature osteoclast compared to precursor cells and other normal human tissues (
(129) SEQ. ID. NO:25
(130) SEQ. ID. NO:25 (Table 5) corresponds to a previously identified gene that encodes a protein, SNARE protein Ykt6 (YKT6), which is one of the SNARE recognition molecules implicated in vesicular transport between secretory compartments (see Table 1). We have demonstrated that this gene is significantly upregulated in mature osteoclast compared to precursor cells and other normal human tissues (
(131) SEQ. ID. NO:26
(132) SEQ. ID. NO:26 (Table 5) corresponds to a previously identified gene that encodes a protein, Actinin, alpha 1 (ACTN1), which is cytoskeletal, and involved in actin binding and adhesion (see Table 1). We have demonstrated that this gene is significantly upregulated in intermediate and mature osteoclast compared to precursor cells and other normal human tissues (
(133) SEQ. ID. NO:27
(134) SEQ. ID. NO:27 (Table 5) corresponds to a previously identified gene that encodes a protein, CIpX caseinolytic peptidase X homolog (E. coli) (CLPX), which may be involved in protein turnover (see Table 1). We have demonstrated that this gene is significantly upregulated in intermediate and mature osteoclast compared to precursor cells and other normal human tissues (
(135) SEQ. ID. NO:28
(136) SEQ. ID. NO:28 (Table 5) corresponds to a previously identified gene that encodes a protein, Carbonic anhydrase II (CA2), which has carbonate dehydratase activity (see Table 1). Defects in this enzyme are associated with osteopetrosis and renal tubular acidosis (McMahon et al., 2001) and have been shown to be upregulated in mature osteoclasts under induced acidic pH conditions (Biskobing and Fan, 2000). We have demonstrated that this gene is markedly upregulated in intermediate and mature osteoclast compared to precursor cells independent of induced acidic pH conditions and other normal human tissues (
(137) SEQ. ID. NO:29
(138) SEQ. ID. NO:29 (Table 5) corresponds to a previously identified gene that encodes a protein, Sorting nexin 10 (SNX10), whose function has not been determined (see Table 1). We have demonstrated that this gene is markedly upregulated in mature osteoclast compared to precursor cells and most normal human tissues (
(139) SEQ. ID. NO:30
(140) SEQ. ID. NO:30 (Table 5) corresponds to a previously identified gene that encodes a protein, Tudor domain containing 3 (TDRD3), whose function has not been determined but may be involved in nucleic acid binding (see Table 1). We have demonstrated that this gene is markedly upregulated in mature osteoclast compared to precursor cells and most normal human tissues (
(141) SEQ. ID. NO:31
(142) SEQ. ID. NO:31 (Table 5) corresponds to a previously identified gene that encodes a protein, Selenoprotein P, plasma, 1 (SEPP1), which has been implicated as an oxidant defense in the extracellular space and in the transport of selenium (see Table 1). This gene encodes a selenoprotein that contains multiple selenocysteines. Selenocysteine is encoded by the usual stop codon UGA. The unususal amino acids are indicated as U in the amino acid sequence in SEQ. ID. NO:78 (Table 5) or by Xaa in the sequence listing. We have demonstrated that this gene is markedly upregulated in intermediate and mature osteoclast compared to precursor cells and most normal human tissues (
(143) SEQ. ID. NO:32
(144) SEQ. ID. NO:32 (Table 5) corresponds to a previously identified gene that encodes a hypothetical protein, KIAA0040, which has no known function (see Table 1). We have demonstrated that this gene is markedly upregulated in intermediate and mature osteoclast compared to precursor cells and most normal human tissues (
(145) SEQ. ID. NO:33
(146) SEQ. ID. NO:33 (Table 5) corresponds to a previously identified gene that encodes a protein, Dipeptidylpeptidase 4 (CD26, adenosine deaminase complexing protein 2) (DPP4), which is an intrinsic membrane glycoprotein and a serine exopeptidase that cleaves X-proline dipeptides from the N-terminus of polypeptides (see Table 1). We have demonstrated that this gene is markedly upregulated in intermediate and mature osteoclast compared to precursor cells and most normal human tissues (
(147) SEQ. ID. NO:34:
(148) SEQ. ID. NO:34 (Table 5) corresponds to a previously identified gene that encodes a protein, cystatin C precursor, with members of the cystatin family known to be inhibitor of cysteine proteases (see Table 1). We have demonstrated that this gene is markedly upregulated in intermediate and mature osteoclast compared to precursor cells and other normal human tissues (
(149) SEQ. ID. NO:85
(150) SEQ. ID. NO:85 (Table 5) encodes an unknown protein found on chromosome 1 (clone RP11-344F13), which contains a novel gene (see Table 1). We have demonstrated that this gene is markedly upregulated in intermediate and mature osteoclast compared to precursor cells and other normal human tissues (
(151) SEQ. ID. NO:86
(152) SEQ. ID. NO:86 (Table 5) encodes no known protein. Unknown gene with matching Est sequence in the data base corresponding to B0182670 isolated from an osteoarthritic cartilage sample (see Table 1) We have demonstrated that this gene is significantly upregulated in intermediate and mature osteoclast compared to precursor cells and other normal human tissues (
(153) H Cloning of Full-length cDNAs of Selected Sequences from Osteoclast mRNA:
(154) It was necessary to obtain full-length cDNA sequences in order to perform functional studies of the expressed proteins. Spliced variants are increasingly being implicated in tissue specific functions and as such, it is important to work with cDNA clones from the system under study. Applicant also recognizes that spliced variants may not always be involved. Thus, the applicant's approach has been to isolate the relevant full-length cDNA sequences directly from osteoclasts in order to identify variants and their potential role with respect to specificity.
(155) Coding cDNA clones were isolated using both a 5-RACE strategy (Invitrogen, Burlington, ON) and a standard two-primer gene specific approach in PCR. The 5-RACE strategy used cDNA prepared from cap-selected osteoclast RNA and/or RAMP amplified osteoclast RNA. For amplification using gene specific primers, either cDNA prepared from RAMP RNA or total RNA was used. All cDNAs were synthesized following standard reverse transcription procedures (Invitrogen, Burlington, ON). The cDNA sequences obtained were cloned in E. coli DH10B and the nucleotide sequences for multiple clones determined. Thereafter, the cDNA sequences for each set were aligned and the open reading frame(s) (ORF) identified using standard software (e.g. ORF Finder-NCBI). Table 2 shows the concensus sequence of the cDNA clones for the coding region for SEQ. ID. NO.1 (SEQ. ID. NO. 83) and SEQ. ID. NO.2 (SEQ. ID. NO. 84) obtained from a human osteoclast sample, which were identical to that of the published sequences corresponding to Accession# NM_213602 and NM_001014433 (NCBI), respectively.
(156) IRNA Interference Studies
(157) RNA interference is a recently discovered gene regulation mechanism that involves the sequence-specific decrease in a gene's expression by targeting the mRNA for degradation and although originally described in plants, it has been discovered across many animal kingdoms from protozoans and invertebrates to higher eukaryotes (reviewed in Agrawal et al., 2003). In physiological settings, the mechanism of RNA interference is triggered by the presence of double-stranded RNA molecules that are cleaved by an RNAse III-like protein active in cells, called Dicer, which releases the 21-23 bp siRNAs. The siRNA, in a homology-driven manner, complexes into a RNA-protein amalgamation termed RISC (RNA-induced silencing complex) in the presence of mRNA to cause degradation resulting in attenuation of that mRNA's expression (Agrawal et al., 2003).
(158) Current approaches to studying the function of genes, such as gene knockout mice and dominant negatives, are often inefficient, and generally expensive, and time-consuming. RNA interference is proving to be a method of choice for the analysis of a large number of genes in a quick and relatively inexpensive manner. Although transfection of synthetic siRNAs is an efficient method, the effects are often transient at best (Hannon G. J., 2002). Delivery of plasmids expressing short hairpin RNAs by stable transfection has been successful in allowing for the analysis of RNA interference in longer-term studies (Brummelkamp et al., 2002; Elbashir et al., 2001). In addition, more recent advances have permitted the expression of siRNA molecules, in the form of short hairpin RNAs, in primary human cells using viral delivery methods such as lentivirus (Lee et al., 2004; Rubinson et al., 2003).
(159) JDetermination of Knockdown Effects on Osteoclastogenesis
(160) In order to develop a screening method for the human candidate genes, RNA interference was adapted to deliver shRNAs into human osteoclast precursor cells so that the expression of the candidate genes could be attenuated. This approach would then allow osteoclast differentiation to be carried out in cells containing decreased expression of these genes to determine their requirement, if any, in this process.
(161) To this end, a commercial lentiviral shRNA delivery system (Invitrogen, Burlington, ON) was utilized to introduce specific shRNAs into human osteoclast precursor cells. The techniques used were as described by the manufacturer unless otherwise stated. In this example, the results obtained for two of the candidate genes, SEQ. ID. NO. 1 (AB0326) and SEQ. ID. NO. 2 (AB0369) tested so far, are presented. The proteins encoded by both of these two genes have no known function. The shRNA sequences used to specifically target SEQ. ID. NO. 1 and SEQ. ID. NO. 2 were 5-CAGGCCCAGGAGTCCAATT-3 (SEQ. ID. NO. 42) and 5-TCCCGTCTTTGGGTCAAAA-3 (SEQ. ID. NO. 43) respectively. Briefly, a template for the expression of the shRNA was cloned into the lentiviral expression vector and co-transfected in 293FT cells with expression vectors for the viral structural proteins. After two days, supernatants containing the lentivirus were collected and stored at 80 C. Human osteoclast precursors purchased from Cambrex (East Rutherford. N.J.) were seeded in 24-well plates and cultured in complete medium containing macrophage-colony stimulating factor and allowed to adhere for three days. After washing with PBS, the cells were infected with 20 MOIs (multiplicity of infection) of either lentiviral particles containing a shRNA specific for the bacterial lacZ gene as a control (lacZ shRNA) or SEQ. ID. NO. 1 (AB0326 shRNA) or SEQ. ID. NO. 2 (AB0369 shRNA). After 24 h, the infected cells were treated with same medium containing 100 ng/ml RANK ligand for 5-8 days to allow for differentiation of osteoclast from precursor cells. Mature osteoclasts were fixed with formaldehyde and stained for TRAP expression as follows: the cells were washed with PBS and fixed in 10% formaldehyde for 1 h. After two PBS washes, the cells were lightly permeabilized in 0.2% Triton X-100 in PBS for 5 min before washing in PBS. Staining was conducted at 37 C. for 20-25 min in 0.01% Naphtol AS-MX phosphate, 0.06% Fast Red Violet, 50 mM sodium tartrate, 100 mM sodium acetate, pH 5.2. The stained cells were visualized by light microscopy and photographed (magnification: 40). A significant decrease in the number of multinucleated osteoclasts was observed from precursor cells infected with the AB0326 shRNA (
(162) Similar experimentations to those described above are carried out for other sequences (SEQ ID NO.3 to SEQ ID NO.:33, SEQ ID NO.:85 or SEQ ID NO. 86).
(163) KBiological Validation of the Mouse Orthologue for AB0326 (SEQ. ID. NO. 35) in Osteoclastogenesis Using the RAW 264.7 Model
(164) As a means of developing a drug screening assay for the discovery of therapeutic molecules capable of attenuating human osteoclasts differentation and activity using the targets identified, it was necessary to turn to another osteoclast differentiation model. The RAW 264.7 (RAW) osteoclast precursor cell line is well known in the art as a murine model of osteoclastogenesis. However, due to the difficulty in transiently transfecting RAW cells, stable transfection was used as an approach where shRNA are expressed in the RAW cells constitutively. This permitted long term studies such as osteoclast differentiation to be carried out in the presence of specific shRNAs specific to the mouse orthologues of the human targets identified.
(165) RAW cells were purchased from American Type Culture Collection (Manassass, Va.) and maintained in high glucose DMEM containing 10% fetal bovine serum and antibiotics. The cells were sub-cultured bi-weekly to a maximum of 10-12 passages. For osteoclast differentiation experiments, RAW cells were seeded in 96-well plates at a density of 410.sup.3 cells/well and allowed to plate for 24 h. Differentiation was induced in high glucose DMEM, 10% charcoal-treated foetal bovine serum (obtained from Hyclone, Logan, Utah), 0.05% BSA, antibiotics, 10 ng/ml macrophage colony stimulating factor (M-CSF), and 100 ng/ml RANK ligand. The plates were re-fed on day 3 and osteoclasts were clearly visible by day 4. Typically, the cells were stained for TRAP on day 4 or 5 unless otherwise indicated.
(166) To incorporate the shRNA-expression cassettes into the RAW cell chromosomes, the pSilencer 2.0 plasmid (SEQ. ID. NO. 47) was purchased from Ambion (Austin, Tex.) and sequence-specific oligonucleotides were ligated as recommended by the manufacturer. Two shRNA expression plasmids were designed and the sequences used for attenuating the mouse ortholog of AB0326 (SEQ. ID. NO. 35) gene expression were 5-GCGCCGCGGATCGTCAACA-3 (SEQ. ID. NO. 44) and 5-ACACGTGCACGGCGGCCAA-3 (SEQ. ID. NO. 45). A plasmid supplied by Ambion containing a scrambled shRNA sequence with no known homology to any mammalian gene was also included as a negative control in these experiments. RAW cells were seeded in 6-well plates at a density of 510.sup.5 cells/well and transfected with 1 g of each plasmid using Fugene6 (Roche, Laval, QC) as described in the protocol. After selection of stable transfectants in medium containing 2 g/ml puromycin, the cell lines were expanded and tested in the presence of RANK ligand for osteoclastogenesis.
(167) The stably transfected cell lines were designated RAW-0326.1, RAW-0326.2 and RAW-ctl. In 96-well plates in triplicate, 4 000 cells/well were seeded and treated with 100 ng/ml RANK ligand. After 4 days, osteoclasts were stained for TRAP expression and visualized by light microscopy (magnification was 40 and 100 as depicted in the left and right panels, respectively).
(168) The representative results for the RAW-0326.2 line is shown in
(169) LA Functional Complementation Assay for SEQ. ID. NO. 1 (AB0326) in RAW 264.6 Cells to Screen for Inhibitors of Osteoclastogenesis
(170) To establish a screening assay based on SEQ. ID. NO. 1 (AB0326) to find small molecules capable of attenuating osteoclast differentiation, the cDNA encoding human AB0326 was introduced into the RAW-0326.2 cell line. Thus, if the human AB0326 plays an identical functional role as the mouse orthologue in RAW 264.7 cells, it should restore the osteoclastogenesis capabilities of the RAW-0326.2 cell line.
(171) To accomplish this task, the RAW-0326.2 cell line was transfected with an eukaryotic expression vector encoding the full length cDNA for human AB0326, termed pd2-hAB0326. This expression vector (pd2; SEQ. ID. NO. 47) was modified from a commercial vector, pd2-EGFP-N1 (Clontech, Mountain View, Calif.) where the EGFP gene was replaced by the full length coding sequence of the human AB0326 cDNA. The AB0326 gene expression was driven by a strong CMV promoter. Stable transfectants were selected using the antibiotic, G418. This resulted in a RAW-0326.2 cell line that expressed the human AB0326 gene product in which, the mouse orthologue of AB0326 was silenced. As a control, RAW-0326.2 cells were transfected with the pd2 empty vector, which should not complement the AB0326 shRNA activity. Also, the pd2 empty vector was transfected into RAW 264.7 cells to serve as a further control. After selection of stable pools of cells, 4 000 cells/well were seeded in 96-well plates and treated for 4 days with 100 ng/ml RANK ligand. Following fixation with formaldehyde, the cells were stained for TRAP, an osteoclast-specific marker gene. As shown in
(172) This particular type of cell-based assay can now serve as the basis for screening compounds capable of binding to and inhibiting the function of human AB0326. A compound library could be applied to this rescued cell line in order to identify molecules (small molecule drugs, peptides, or antibodies) capable of inhibiting AB0326. Any reduction in osteoclast differentiation measured by a reduction in the expression of TRAP would be indicative of a decrease in human AB0326 activity. This assay is applicable to any gene required for proper osteoclast differentiation in RAW cells. A complementation assay can be developed for any human gene and used as the basis for drug screening.
(173) Similar experimentation to those described above are carried out for other sequences (SEQ ID NO.3 to SEQ ID NO.:33 or SEQ ID NO.:85 or SEQ ID NO.:86). This type of assay may be used to screen for molecules capable of increasing or decreasing (e.g., inhibiting) the activity or expression of NSEQ or PSEQ.
(174) In the NSEQs of the present invention, their methods, compositions, uses, its, assays or else, the polynucleotide may either individually or in group (collectively) more particularly be (or may comprise or consist in) either;
(175) a translatable portion of either SEQ ID NO.:1, of SEQ ID NO.:2, of SEQ ID NO.:3, of SEQ ID NO.:4, of SEQ ID NO.:5, of SEQ ID NO.:6, of SEQ ID NO.:7, of SEQ ID NO.:8, of SEQ ID NO.:9, of SEQ ID NO:10, of SEQ ID NO.:11, of SEQ ID NO 12, of SEQ ID NO.:13, of SEQ ID NO.:14, of SEQ ID NO.:15, of SEQ ID NO.:16, of SEQ ID NO.:17, of SEQ ID NO.:18, of SEQ ID NO.:19, of SEQ ID NO.:20, of SEQ ID NO.:21, of SEQ ID NO.:22, of SEQ ID NO.:23, of SEQ ID NO.:24, of SEQ ID NO.:25, of SEQ ID NO.:26, of SEQ ID NO.:27, of SEQ ID NO.:28, of SEQ ID NO.:29, of SEQ ID NO.:30, of SEQ ID NO.:31, of SEQ ID NO.:32, of SEQ ID NO.:33, of SEQ ID NO.:85 or of SEQ ID NO.:86;
(176) sequence substantially identical to a translatable portion of SEQ ID NO.:1, of SEQ ID NO.:2, of SEQ ID NO.:3, of SEQ ID NO.:4, of SEQ ID NO.:5, of SEQ ID NO.:6, of SEQ ID NO.:7, of SEQ ID NO.:8, of SEQ ID NO.:9, of SEQ ID NO.:10, of SEQ ID NO.:11, of SEQ ID NO.:12, of SEQ ID NO.:13, of SEQ ID NO.:14, of SEQ ID NO.:15, of SEQ ID NO.:16, of SEQ ID NO.:17, of SEQ ID NO.:18, of SEQ ID NO.:19, of SEQ ID NO.:20, of SEQ ID NO.:21, of SEQ ID NO.:22, of SEQ ID NO.:23, of SEQ ID NO.:24, of SEQ ID NO.:25, of SEQ ID NO.:26, of SEQ ID NO.:27, of SEQ ID NO.:28, of SEQ ID NO.:29, of SEQ ID NO.:30, of SEQ ID NO.:31, of SEQ ID NO.:32, of SEQ ID NO.:33, of SEQ ID NO.:85 or of SEQ ID NO.:86;
(177) a sequence substantially complementary to a translatable portion of SEQ ID NO.:1, a fragment of a transcribable portion of SEQ ID NO.:1, of SEQ ID NO.:2, of SEQ ID NO.:3, of SEQ ID NO.:4, of SEQ ID NO.:5, of SEQ ID NO.:6, of SEQ ID NO.:7, of SEQ ID NO.:8, of SEQ ID NO.:9, of SEQ ID NO.:10, of SEQ ID NO.:11, of SEQ ID NO.:12, of SEQ ID NO.:13, of SEQ ID NO.:14, of SEQ ID NO.:15, of SEQ ID NO.:16, of SEQ ID NO.:17, of SEQ ID NO.:18, of SEQ ID NO.:19, of SEQ ID NO.:20, of SEQ ID NO.:21, of SEQ ID NO.:22, of SEQ ID NO.:23, of SEQ ID NO.:24, of SEQ ID NO.:25, of SEQ ID NO.:26, of SEQ ID NO.:27, of SEQ ID NO.:28, of SEQ ID NO.:29, of SEQ ID NO.:30, of SEQ ID NO.:31, of SEQ ID NO.:32, of SEQ ID NO.:33, of SEQ ID NO.:85 or of SEQ ID NO.:86;
(178) a fragment of a sequence substantially identical to a translatable portion of SEQ ID NO.:1, of SEQ ID NO.:2, of SEQ ID NO.:3, of SEQ ID NO.:4, of SEQ ID NO.:5, of SEQ ID NO.:6, of SEQ ID NO.:7, of SEQ ID NO.:8, of SEQ ID NO.:9, of SEQ ID NO.:10, of SEQ ID NO.:11, of SEQ ID NO.:12, of SEQ ID NO.:13, of SEQ ID NO.:14, of SEQ ID NO.:15, of SEQ ID NO.:16, of SEQ ID NO.:17, of SEQ ID NO.:18, of SEQ ID NO.:19, of SEQ ID NO.:20, of SEQ ID NO.:21, of SEQ ID NO.:22, of SEQ ID NO.:23, of SEQ ID NO.:24, of SEQ ID NO.:25, of SEQ ID NO.:26, of SEQ ID NO.:27, of SEQ ID NO.:28, of SEQ ID NO.:29, of SEQ ID NO.:30, of SEQ ID NO.:31, of SEQ ID NO.:32, of SEQ ID NO.:33, of SEQ ID NO.:85 or of SEQ ID NO.:86;
(179) a fragment of a sequence substantially complementary to a translatable portion of SEQ ID NO.:1, of SEQ ID NO.:2, of SEQ ID NO.:3, of SEQ ID NO.:4, of SEQ ID NO.:5, of SEQ ID NO.:6, of SEQ ID NO.:7, of SEQ ID NO.:8, of SEQ ID NO.:9, of SEQ ID NO.:10, of SEQ ID NO.:11, of SEQ ID NO.:12, of SEQ ID NO.:13, of SEQ ID NO.:14, of SEQ ID NO.:15, of SEQ ID NO.:16, of SEQ ID NO.:17, of SEQ ID NO.:18, of SEQ ID NO.:19, of SEQ ID NO.:20, of SEQ ID NO.:21, of SEQ ID NO.:22, of SEQ ID NO.:23, of SEQ ID NO.:24, of SEQ ID NO.:25, of SEQ ID NO.:26, of SEQ ID NO.:27, of SEQ ID NO.:28, of SEQ ID NO.:29, of SEQ ID NO.:30, of SEQ ID NO.:31, of SEQ ID NO.:32, of SEQ ID NO.:33, of SEQ ID NO.:85 or of SEQ ID NO.:86;
(180) or a library comprising any of the above.
(181) In the PSEQs of the present invention, their methods, compositions, uses, kits assays, or else, the polypeptide may either individually or in group (collectively) more particularly be (or may comprise or consist in) either;
(182) SEQ ID SEQ ID NO.:49, SEQ ID NO.:50, SEQ ID NO.:51, SEQ ID NO.:52, SEQ ID NO.:53, SEQ ID NO.:54, SEQ ID NO.:55, SEQ ID NO.:56, SEQ ID NO.:57, SEQ ID NO.:58, SEQ ID NO.:59, SEQ ID NO.:60, SEQ ID NO.:61, SEQ ID NO.:62, SEQ ID NO.:63, SEQ ID NO.:64, SEQ ID NO.:65, SEQ ID NO.:66, SEQ ID NO.:67, SEQ ID NO.:68, SEQ ID NO.:69, SEQ ID NO.:70, SEQ ID NO.:71, SEQ ID NO.:72, SEQ ID NO.:73, SEQ ID NO. 74, SEQ ID NO.:75 SEQ ID NO.:76, SEQ ID NO.:77, SEQ ID NO.:78, SEQ ID NO.:79 or SEQ ID NO.:80;
(183) a fragment of SEQ ID NO.:48, SEQ ID NO.:49, SEQ ID NO.:50, SEQ ID NO.:51, SEQ ID NO.:52, SEQ ID NO.:53, SEQ ID NO.:54, SEQ ID NO.:55, SEQ ID NO.:56, SEQ ID NO.:57, SEQ ID NO.:58, SEQ ID NO.:59, SEQ ID NO.:60, SEQ ID NO.:61, SEQ ID NO.:62, SEQ ID NO.:63, SEQ ID NO.:64, SEQ ID NO.:65, SEQ ID NO.:66, SEQ ID NO.:67, SEQ ID NO.:68, SEQ ID NO.:69, SEQ ID NO.:70, SEQ ID NO.:71, SEQ ID NO.:72, SEQ ID NO.:73, SEQ ID NO.:74, SEQ ID NO.:75 SEQ ID NO.:76, SEQ ID NO.:77, SEQ ID NO.:78, SEQ ID NO.:79 or SEQ ID NO.:80;
(184) or a biologically active analog, variant or a non-human hortologue of SEQ ID NO.:48, SEQ ID NO.:49, SEQ ID NO.:50, SEQ ID NO.:51, SEQ ID NO.:52, SEQ ID NO.:53, SEQ ID NO.:54, SEQ ID NO.:55, SEQ ID NO.:56, SEQ ID NO.:57, SEQ ID NO.:58, SEQ ID NO.:59, SEQ ID NO.:60, SEQ ID NO.:61, SEQ ID NO.:62, SEQ ID NO.:63, SEQ ID NO.:64, SEQ ID NO.:65, SEQ ID NO.:66, SEQ ID NO.:67, SEQ ID NO.:68, SEQ ID NO.:69, SEQ ID NO.:70, SEQ ID NO.:71, SEQ ID NO.:72, SEQ ID NO.:73, SEQ ID NO.:74, SEQ ID NO.:75 SEQ ID NO.:76, SEQ ID NO.:77, SEQ ID NO.:78, SEQ ID NO.:79 or SEQ ID NO.:80.
(185) One of skill in the art will readily recognize that orthologues for all mammals maybe identified and verified using well-established techniques in the art, and that this disclosure is in no way limited to one mammal. The term mammal(s) for purposes of this disclosure refers to any animal classified as a mammal, including humans, domestic and farm animals, and zoo, sports, or pet animals, such as dogs, cats, cattle, horses, sheep, pigs, goats, rabbits, etc. Preferably, the mammal is human.
(186) The sequences in the experiments discussed above are representative of the NSEQ being claimed and in no way limit the scope of the invention. The disclosure of the roles of the NSEQs in osteoclastogenesis and osteoclast function satisfies a need in the art to better understand the bone remodeling process, providing new compositions that are useful for the diagnosis, prognosis, treatment, prevention and evaluation of therapies for bone remodeling and associated disorders.
(187) The art of genetic manipulation, molecular biology and pharmaceutical target development have advanced considerably in the last two decades. It will be readily apparent to those skilled in the art that newly identified functions for genetic sequences and corresponding protein sequences allows those sequences, variants and derivatives to be used directly or indirectly in real world applications for the development of research tools, diagnostic tools, therapies and treatments for disorders or disease states in which the genetic sequences have been implicated.
(188) Although the present invention has been described hereinabove by way of preferred embodiments thereof, it may be modified, without departing from the spirit and nature of the subject invention as defined in the appended claims.
(189) TABLE-US-00002 TABLE 1 Differentially expressed sequences found in osteoclasts. NCBI ORF Unigene Nucleotide Nucleotide #/Gene Positions/ Sequence Symbol/Gene Accession Polypeptide No. ID Number sequence No. Function SEQ ID NO. 1 Hs.287692/ NM_213602 150-1136 hypothetical protein CD33L3/ encoding SEQ LOC284266; 284266 ID NO.: 48 membrane associated function unknown SEQ ID NO. 2 Hs.520070/ NM_001014433 104-700 chromosome 6 open C6orf82/ encoding SEQ reading frame 82; 51596 ID NO.: 49 membrane associated with unknown function SEQ ID NO. 3 Hs.546482/ NM_178833 633-2246 hypothetical protein LOC133308/ encoding SEQ LOC133308 possibly 133308 ID NO.: 50 involved in regulation of pH SEQ ID NO. 4 Hs.135997/ NM_138461 112-741 transmembrane 4 L LOC116211/ encoding SEQ six family member 19; 116211 ID NO.: 51 function unknown SEQ ID NO. 5 Hs.558655/ NM_145280 172-82 hypothetical protein LOC151194/ encoding SEQ LOC151194 151194 ID NO.: 52 SEQ ID NO. 6 Hs.89714/ NM_002994 119-463 chemokine (CXC CXCL5/ encoding SEQ motif) ligand 5 6374 ID NO.: 53 precursor; chemokine activity SEQ ID NO. 7 Hs.495960/ NM_005765 103-1155 ATPase, H+ ATP6AP2/ encoding SEQ transporting, 10159 ID NO.: 54 lysosomal accessory protein 2; receptor activity SEQ ID NO. 8 Hs.42400/ NM_182488 259-1371 ubiquitin-specific USP12/ encoding SEQ protease 12-like 1; 219333 ID NO.: 55 cysteine-type endopeptidase activity SEQ ID NO. 9 Hs.164853/ NM_003341 175-756 ubiquitin-conjugating UBE2E1/ encoding SEQ enzyme E2E 1 7324 ID NO.: 56 isoform 1; ligase activity SEQ ID NO. Hs.433278/ NM_032565 53-673 emopamil binding 10 EBPL/ encoding SEQ related protein, 84650 ID NO.: 57 delta8-delta7; integral to membrane SEQ ID NO. Hs.106015/ NM_018482 29-3418 development and 11 DDEF1/ encoding SEQ differentiation 50807 ID NO.: 58 enhancing factor 1; membrane SEQ ID NO. Hs.517265/ NM_021181 16-1023 SLAM family member 12 SLAMF7/ encoding SEQ 7; receptor activity 57823 ID NO.: 59 SEQ ID NO. Hs.470804/ NM_006357 385-1008 ubiquitin-conjugating 13 UBE2E3/ encoding SEQ enzyme E2E 3; 10477 ID NO.: 60 ligase activity SEQ ID NO. Hs.278959/ NM_015973 177-548 galanin preproprotein; 14 GAL/ encoding SEQ neuropeptide 51083 ID NO.: 61 hormone activity SEQ ID NO. NM_032569/ NM_032569 19-1680 cytokine-like nuclear 15 N-PAC/ encoding SEQ factor n-pac; 3- 84656 ID NO.: 62 hydroxyisobutyrate dehydrogenase-like SEQ ID NO. Hs.248472/ NM_000887 68-3559 integrin alpha X 16 ITGAX/ encoding SEQ precursor; cell-matrix 3687 ID NO.: 63 adhesion SEQ ID NO. Hs.156727/ NM_054027 321 = 1799 ankylosis, progressive 17 ANKH/ encoding SEQ homolog; regulation of 1827 ID NO.: 64 bone mineralization SEQ ID NO. Hs.477155/ NM_001690 67-1920 ATPase, H+ 18 ATP6V1A/ encoding SEQ transporting, 523 ID NO.: 65 lysosomal 70 kD, V1 subunit A, isoform 1; proton transport; hydrolase activity SEQ ID NO. Hs.445386/ NM_018252 139-1191 hypothetical protein 19 FLJ10874/ encoding SEQ LOC55248 55248 ID NO.: 66 SEQ ID NO. Hs.467662/ NM_004763 170-772 integrin cytoplasmic 20 ITGB1BP1/ encoding SEQ domain-associated 9270 ID NO.: 67 protein 1; cell adhesion SEQ ID NO. Hs.408236/ NM_032731 77-448 thioredoxin-like 5; 21 TXNL5/ encoding SEQ function unknown 84817 ID NO.: 68 SEQ ID NO. Hs.236516/ NM_014358 152-811 C-type lectin, 22 CLECSF9/ encoding SEQ superfamily member 9; 26253 ID NO.: 69 integral to membrane SEQ ID NO. Hs.56294/ NM_004794 265-978 Ras-related protein 23 RAB33A/ encoding SEQ Rab-33A; small 9363 ID NO.: 70 GTPase mediated signal transduction SEQ ID NO. Hs.282326/ NM_004414 73-831 calcipressin 1 isoform 24 DSCR1/ encoding SEQ a; interacts with 1827 ID NO.: 71 calcineurin A and inhibits calcineurin- dependent signaling pathways SEQ ID NO. Hs.520794/ NM_006555 158-754 SNARE protein Ykt6; 25 YKT6/ encoding SEQ vesicular transport 10652 ID NO.: 72 between secretory compartments SEQ ID NO. Hs.509765/ NM_001102 184-2862 alpha-actinin 1; 26 ACTN1/ encoding SEQ structural constituent 87 ID NO.: 73 of cytoskeleton; calcium ion binding SEQ ID NO. Hs.113823/ NM_006660 73-1974 ClpX caseinolytic 27 CLPX/ encoding SEQ protease X homolog; 10845 ID NO.: 74 energy-dependent regulator of proteolysis SEQ ID NO. Hs.155097/ NM_000067 66-848 carbonic anhydrase II; 28 CA2/ encoding SEQ carbonate 760 ID NO.: 75 dehydratase activity SEQ ID NO. Hs.520714/ NM_013322 216-821 sorting nexin 10; 29 SNX10/ encoding SEQ function unknown 29887 ID NO.: 76 SEQ ID NO. Hs.525061/ NM_030794 258-2213 tudor domain 30 TDRD3/ encoding SEQ containing 3; nucleic 81550 ID NO.: 77 acid binding SEQ ID NO. Hs.275775/ NM_005410 101-1246 selenoprotein P; 31 SEPP1/ encoding SEQ extracellular space 6414 ID NO.: 78 implicated in defense SEQ ID NO. Hs.518138/ NM_014656 921-1382 KIAA0040; novel 32 KIAA0040/ encoding SEQ protein 9674 ID NO.: 79 SEQ ID NO. Hs.368912/ NM_001935 562-2862 dipeptidylpeptidase 33 DPP4/ encoding SEQ IV; aminopeptidase 1803 ID NO.: 80 activity SEQ ID NO. Hs.304682/ NM_000099 76-516 cysteine protease 34 CST3/ encoding SEQ inhibitor activity 1471 ID NO.: 81 SEQ ID NO. None/ AL357873 Novel novel 85 none/ none SEQ ID NO. AL645465/ novel novel 86 BQ182670
(190) TABLE-US-00003 TABLE 2 Shows the concensus sequences for SEQ. ID. NO. 1 and SEQ. ID. NO. 2 cloned from a mature human osteoclast sample. ORF Sequence Nucleotide Polypeptide Identification Positions sequence No. SEQ ID NO. 83 1-987 SEQ ID NO. 48 SEQ ID NO. 84 1-471 SEQ ID NO. 49
(191) TABLE-US-00004 TABLE 3 List of mouse orthologue for AB0326 NCBI ORF Polypeptide Sequence Unigene Accession Nucleotide sequence Identification Cluster Number Positions No. SEQ ID None/ XM_884636 122-1102/ SEQ ID NO. 35 LOC620235/ similar to NO.: 82 620235 neural cell adhesion molecule 2/ unknown function
(192) TABLE-US-00005 TABLE 4 list of additional sequences identification of plasmids and shRNA oligonucleotides Sequence Identification name Description SEQ. ID. NO. 36 p14 Vector for STAR SEQ. ID. NO. 37 p17+ Vector for STAR SEQ. ID. NO. 38 pCATRMAN Vector for STAR SEQ. ID. NO. 39 p20 Vector for STAR SEQ. ID. NO. 40 OGS 77 Primer used for STAR p14 vector SEQ. ID. NO. 41 OGS 302 Primer used for STAR p17+ vector SEQ. ID. NO: 42 human 0326.1 siRNA sequence for SEQ. ID. NO. 1 SEQ. ID. NO: 43 Human 0369.1 shRNA sequence for SEQ. ID. NO. 2 SEQ. ID. NO: 44 mouse 0326.1 shRNA sequence for SEQ. ID. NO. 35 SEQ. ID. NO: 45 mouse 0326.2 shRNA sequence for SEQ ID NO. 35 SEQ. ID. NO: 46 pSilencer2.0 vector SEQ. ID. NO: 47 pd2 vector
(193) TABLE-US-00006 TABLE5 NucleotideSequence (5-3) ORFs SEQIDNO.:1 SEQIDNO.:48 TCCGGCTCCCGCAGAGCCCACAGGGACCTGCAGATCTGAGTGCCCTGCCCACCCCCGCCCGCCTTCCTTCCCCCACCACGCCTGGGA MEKSIWLLACLAWV GGGCCCTCACTGGGGAGGTGGCCGAGAACGGGTCTGGCCTGGGGTGTTCAGATGCTCACAGCATGGAAAAGTCCATCTGGCTGCTGG LPTGSFVRTKIDTT CCTGCTTGGCGTGGGTTCTCCCGACAGGCTCATTTGTGAGAACTAAAATAGATACTACGGAGAACTTGCTCAACACAGAGGTGCACA ENLLNTEVHSSPAQ GCTCGCCAGCGCAGCGCTGGTCCATGCAGGTGCCACCCGAGGTGAGCGCGGAGGCAGGCGACGCGGCAGTGCTGCCCTGCACCTTCA RWSMQVPPEVSAEA CGCACCCGCACCGCCACTACGACGGGCCGCTGACGGCCATCTGGCGCGCGGGCGAGCCCTATGCGGGCCCGCAGGTGTTCCGCTGCG GDAAVLPCTFTHPH CTGCGGCGCGGGGCAGCGAGCTCTGCCAGACGGCGCTGAGCCTGCACGGCCGCTTCCGGCTGCTGGGCAACCCGCGCCGCAACGACC RHYDGPLTAIWRAG TCTCGCTGCGCGTCGAGCGCCTCGCCCTGGCTGACGACCGCCGCTACTTCTGCCGCGTCGAGTTCGCCGGCGACGTCCATGACCGCT EPYAGPQVFRCAAA ACGAGAGCCGCCACGGCGTCCGGCTGCACGTGACAGCCGCGCCGCGGATCGTCAACATCTCGGTGCTGCCCAGTCCGGCTCACGCCT RGSELCQTALSLHG TCCGCGCGCTCTGCACTGCCGAAGGGGAGCCGCCGCCCGCCCTCGCCTGGTCCGGCCCGGCCCTGGGCAACAGCTTGGCAGCCGTGC RFRLLGNPRRNDLS GGAGCCCGCGTGAGGGTCACGGCCACCTAGTGACCGCCGAACTGCCCGCACTGACCCATGACGGCCGCTACACGTGTACGGCCGCCA LRVERLALADDRRY ACAGCCTGGGCCGCTCCGAGGCCAGCGTCTACCTGTTCCGCTTCCATGGCGCCAGCGGGGCCTCGACGGTCGCCCTCCTGCTCGGCG FCRVEFAGDVHDRY CTCTCGGCTTCAAGGCGCTGCTGCTGCTCGGGGTCCTGGCCGCCCGCGCTGCCCGCCGCCGCCCAGAGCATCTGGACACCCCGGACA ESRHGVRLHVTAAP CCCCACCACGGTCCCAGGCCCAGGAGTCCAATTATGAAAATTTGAGCCAGATGAACCCCCGGAGCCCACCAGCCACCATGTGCTCAC RIVNISVLPSPAHA CGTGAGGAGTCCCTCAGCCACCAACATCCATTTCAGCACTGTAAAGAACAAAGGCCAGTGCGAGGCTTGGCTGGCACAGCCAGTCCT FRALCTAEGEPPPA GGTTCTCGGGCACCTTGGCAGCCCCCAGCTGGGTGGCTCCTCCCCTGCTCAAGGTCAAGACCCTGCTCAAGGAGGCTCATCTGGCCT LAWSGPALGNSLAA CCTATGTGGACAACCATTTCGGAGCTCCCTGATATTTTTGCCAGCATTTCGTAAATGTGCATACGTCTGTGTGTGTGTGTGTGTGTG VRSPREGHGHLVTA AGAGAGAGAGAGAGAGAGTACACGCATTAGCTTGAGCGTGAAACTTCCAGAAATGTTCCCTTGCCCTTTCTTACCTAGAACACCTGC ELPALTHDGRYTCT TATAGTAAAGCAGACAGGAAACTGTTAAAAAAAAAAAAAAAAAA AANSLGRSEASVYL FRFHGASGASTVAL LLGALGFKALLLLG VLAARAARRRPEHL DTPDTPPRSQAQES NYENLSQMNPRSPP ATMCSP SEQIDNO.:2 SEQIDNO.:49 ACGGAAACGGGCGTGCCATTTCCGCGCACGTCTGCAGATGCGGTAGTCGATTGGTCAAGTCTCCCATGGCTCCTCCTTCATCAGGAG MIGSGLAGSGGAGG GTGGGCAAACCGCGCCATGATAGGGTCGGGATTGGCTGGCTCTGGAGGCGCAGGTGGTCCTTCTTCTACTGTCACATGGTGCGCGCT PSSTVTWCALFSNH GTTTTCTAATCACGTGGCTGCCACCCAGGCCTCTCTGCTCCTGTCTTTTGTTTGGATGCCGGCGCTGCTGCCTGTGGCCTCCCGCCT VAATQASLLLSFVW TTTGTTGCTACCCCGAGTCTTGCTGACCATGGCCTCTGGAAGCCCTCCGACCCAGCCCTCGCCGGCCTCGGATTCCGGCTCTGGCTA MPALLPVASRLLLL CGTTCCGGGCTCGGTCTCTGCAGCCTTTGTTACTTGCCCCAACGAGAAGGTCGCCAAGGAGATCGCCAGGGCCGTGGTGGAGAAGCG PRVLLTMASGSPPT CCTAGCAGCCTGCGTCAACCTCATCCCTCAGATTACATCCATCTATGAGTGGAAAGGGAAGATCGAGGAAGACAGTGAGGTGCTGAT QPSPASDSGSGYVP GATGATTAAAACCCAAAGTTCCTTGGTCCCAGCTTTGACAGATTTTGTTCGTTCTGTGCACCCTTACGAAGTGGCCGAGGTAATTGC GSVSAAFVTCPNEK ATTGCCTGTGGAACAGGGGAACTTTCCGTACCTGCAGTGGGTGCGCCAGGTCACAGAGTCAGTTTCTGACTCTATCACAGTCCTGCC VAKEIARAVVEKRL ATGATGAGCCCTGTTCCTGCTCATCATGAAGATCCCCGCGATACTTCAACGCCTTCTGACTTCCAGGTGATGACTGGGCCCCCAATA AACVNLIPQITSIY AATCCCGTCTTTGGGTCTCTCTGCCAAAAAAAAAAAAAAA EWKGKIEEDSEVLM MIKTQSSLVPALTD FVRSVHPYEVAEVI ALPVEQGNFPYLQW VRQVTESVSDSITV LP SEQIDNO.:3 SEQIDNO.:50 CGGTGTCTCGTCATCTCCGGGAAGACTCGGCGCCTGGGTCCGCGCTCTCTGGGTAAGCTTTCCGGGAAGCTTTCCCGGGAGCTCGCT MGDEDKRITYEDSE GGTCCTGGCCCCAGAAGCCTGCGGACCCGCCCAGGGAGGATAAGCAGCTGAAAGACCGCGCGGTGCCGCTCCGAGGCCCCGGGACGT PSTGMNYTPSMHQE GGGCCCATGGTCGGCCTGGCGCCACCTTTCCGGGGGAAGCCACGCGCACCAGGCATCGCACGCGGCTCTGCACCCGCGCCGCCGGAC AQEETVMKLKGIDA CTGAAACCCGGCGGAGGGCACACGGGGCTGCCGCTGCGGGCCCCGGACCAACCCATGCTTACTCCGGAGCCTGTACCGGCGCCGACG NEPTEGSILLKSSE GGTCGGACCTCCCTGCGCGGTGTCGCCCAGCGGGTTCGTGCGAAAGGCGGGGCCGACTACACGCGGTGCCGCGCCCTGAGACCGTTT KKLQETPTEANHVQ ATCTGCAGTCAACGCAGCCTCCCGGCTCAGCCTGGGAAGATGCGCGAATCGGGAACCCCAGAGCGCGGTGGCTAGACCGGGCTCCGC RLRQMLACPPHGLL CGCCTCCCCCACAGCCCCTTTCCTAATCGTTCAGACGGAGCCTGGTCGACTTCGCCGGAGACTGCCAGATCTCGTTCCTCTTCCCTG DRVITNVTIIVLLW TGTCATCTTCTTAATTATAAATAATGGGGGATGAAGATAAAAGAATTACATATGAAGATTCAGAACCATCCACAGGAATGAATTACA AVVWSITGSECLPG CGCCCTCCATGCATCAAGAAGCACAGGAGGAGACAGTTATGAAGCTCAAAGGTATAGATGCAAATGAACCAACAGAAGGAAGTATTC GNLFGIIILFYCAI TTTTGAAAAGCAGTGAAAAAAAGCTACAAGAAACACCAACTGAAGCAAATCACGTACAAAGACTGAGACAAATGCTGGCTTGCCCTC IGGKLLGLIKLPTL CACATGGTTTACTGGACAGGGTCATAACAAATGTTACCATCATTGTTCTTCTGTGGGCTGTAGTTTGGTCAATTACTGGCAGTGAAT PPLPSLLGMLLAGF GTCTTCCTGGAGGAAACCTATTTGGAATTATAATCCTATTCTATTGTGCCATCATTGGTGGTAAACTTTTGGGGCTTATTAAGTTAC LIRNIPVINDNVQI CTACATTGCCTCCACTGCCTTCTCTTCTTGGCATGCTGCTTGCAGGGTTTCTCATCAGAAATATCCCAGTCATCAACGATAATGTGC KHKWSSSLRSIALS AGATCAAGCACAAGTGGTCTTCCTCTTTGAGAAGCATAGCCCTGTCTATCATTCTGGTTCGTGCTGGCCTTGGTCTGGATTCAAAGG IILVRAGLGLDSKA CCCTGAAGAAGTTAAAGGGCGTTTGTGTAAGACTGTCCATGGGTCCCTGTATTGTGGAGGCGTGCACATCTGCTCTTCTTGCCCATT LKLLKGVCVRLSMG ACCTGCTGGGTTTACCATGGCAATGGGGATTTATACTGGGTTTTGTTTTAGGTGCTGTATCTCCAGCTGTTGTGGTGCCTTCAATGC PCIVEACTSALIAH TCCTTTTGCAGGGAGGAGGCTATGGTGTTGAGAAGGGTGTCCCAACCTTGCTCATGGCAGCTGGCAGCTTCGATGACATTCTGGCCA YLLGLPWQWGFILG TCACTGGCTTCAACACATGCTTGGGCATAGCCTTTTCCACAGGCTCTACTGTCTTTAATGTCCTCAGAGGAGTTTTGGAGGTGGTAA FVLGAVSPAVVVPS TTGGTGTGGCAACTGGATCTGTTCTTGGATTTTTCATTCAGTACTTTCCAAGCCGTGACCAGGACAAACTTGTGTGTAAGAGAACAT MLLLQGGGYGVEKG TCCTTGTGTTGGGGTTGTCTGTGCTAGCTGTGTTCAGCAGTGTGCATTTTGGTTTCCCTGGATCAGGAGGACTGTGCACGTTGGTCA VPTLLMAAGSFDDI TGGCTTTCCTTGCAGGCATGGGATGGACCAGCGAAAAGGCAGAGGTTGAAAAGATAATTGCAGTTGCCTGGGACATTTTTCAGCCCC LAITGFNTCLGIAF TTCTTTTTGGACTAATTGGAGCAGAGGTATCTATTGCATCTCTCAGACCAGAAACTGTAGGCCTTTGTGTTGCCACCGTAGGCATTG STGSTVFNVLRGVL CAGTATTGATACGAATTTTGACTACATTTCTGATGGTGTGTTTTGCTGGTTTTAACTTAAAAGAAAAGATATTTATTTCTTTTGCAT EVVIGVATGSVLGF GGCTTCCAAAGGCCACAGTTCAGGCTGCAATAGGATCTGTGGCTTTGGACACAGCAAGGTCACATGGAGAGAAACAATTAGAGGACT FIQYFPSRDQDKLV ATGGAATGGATGTGTTGACAGTGGCATTTTTGTCCATCCTCATCACAGCCCCAATTGGAAGTCTGCTTATTGGTTTACTGGGCCCCA CKRTFLVLGLSVLA GGCTTCTGCAGAAAGTTGAACATCAAAATAAAGATGAAGAAGTTCAAGGAGAGACTTCTGTGCAAGTTTAGAGGTGAAAAGAGAGAG VFSSVHFGFPGSGG TGCTGAACATAATGTTTAGAAAGCTGCTACTTTTTTCAAGATGCATATTGAAATATGTAATGTTTAAGCTTAAAATGTAATAGAACC LCTLVMAFLAGMGW AAAAGTGTAGCTGTTTCTTTAAACAGCATTTTTAGCCCTTGCTCTTTCCATGTGGGTGGTAATGATTCTATATCCCCAAAAAAAAAA TSEKAEVEKIIAVA AAAAAAAAAAA WDIFQPLLFGLIGA EVSIASLRPETVGL CVATVGIAVLIRIL TTFLMVCFAGFNLK EKIFISFAWLPKAT VQAAIGSVALDTAR SHGEKQLEDYGMDV LTVAFLSILITAPI GSLLIGLLGPRLLQ KVEHQNKDEEVQGE TSVQV SEQIDNO.:4 SEQIDNO.:51 GACAACCTTCAGGTCCAGCCCTGGAGCTGGAGGAGTGGAGCCCCACTCTGAAGACGCAGCCTTTCTCCAGGTTCTGTCTCTCCCATT MVSSPCTPASSRTC CTGATTCTTGACACCAGATGCAGGATGGTGTCCTCTCCCTGCACGCCGGCAAGCTCACGGACTTGCTCCCGTATCCTGGGACTGAGC SRILGLSLGTAALF CTTGGGACTGCAGCCCTGTTTGCTGCTGGGGCCAACGTGGCACTCCTCCTTCCTAACTGGGATGTCACCTACCTGTTGAGGGGCCTC AAGANVALLLPNWD CTTGGCAGGCATGCCATGCTGGGAACTGGGCTCTGGGGAGGAGGCCTCATGGTACTCACTGCAGCTATCCTCATCTCCTTGATGGGC VTYLLRGLLGRHAM TGGAGATACGGCTGCTTCAGTAAGAGTGGGCTCTGTCGAAGCGTGCTTACTGCTCTGTTGTCAGGTGGCCTGGCTTTACTTGGAGCC LGTGLKGGGLMVLT CTGATTTGCTTTGTCACTTCTGGAGTTGCTCTGAAAGATGGTCCTTTTTGCATGTTTGATGTTTCATCCTTCAATCAGACACAAGCT AAILISLMGWRYGC TGGAAATATGGTTACCCATTCAAAGACCTGCATAGTAGGAATTATCTGTATGACCGTTCGCTCTGGAACTCCGTCTGCCTGGAGCCC FSKSGLCRSVLTAL TCTGCAGCTGTTGTCTGGCACGTGTCCCTCTTCTCCGCCCTTCTGTGCATCAGCCTGCTCCAGCTTCTCCTGGTGGTCGTTCATGTC LSGGLALLGALICF ATCAACAGCCTCCTGGGCCTTTTCTGCAGCCTCTGCGAGAAGTGACAGGCAGAACCTTCACTTGCAAGCATGGGTGTTTTCATCATC VTSGVALKDGPFCM GGCTGTCTTGAATCCTTTCTACAAGGAGTGGGTTCAGGCCCTCTGTGGTTAAAGACTGTATCCATGCTGTGCTCAAGGAGGAACTGG FDVSSFNQTQAWKY CAAATGCTGAATATTCTCCAGAAGAAATGCCTCAGCTTACAAAACATTTATCAGAAAACATTAAAGATAAATTAAAAGGTAATCATG GYPFKDLHSRNYLY GTGAAAAAAAAAAAAAAA DRSLWNSVCLEPSA AVVWHVSLFSALLC ISLLQLLLVVVKVI NSLLGLFCSLCEK SEQIDNO.:5 SEQINNO.:52 CCACGCGTCCGCACTTCCAGGGTCGGGGAGACGGAACTGCGGCGACCATGTATTTCTGGTTTATCAAACCGCTAACACCCAGTCTAA MALVPYEETTEFGL GGGCAGGTTCTGTCCCATTGTTATCACTATCGAAGCAGCCGATGGAGGAGGGGAGGTCTGAGCAGAGGGCGGGGTGCAGGCGGAATG QKFHKPLATFSFAN GCCCTCGTGCCCTATGAGGAGACCACGGAATTTGGGTTGCAGAAATTCCACAAGCCTCTTGCAACTTTTTCCTTTGCAAACCACACG HTIQIRQDWRHLGV ATCCAGATCCGGCAGGACTGGAGACACCTGGGAGTCGCAGCGGTGGTTTGGGATGCGGCCATCGTTCTTTCCACATACCTGGAGATG AAVVWDAAIVLSTY GGAGCTGTGGAGCTCAGGGGCCGCTCTGCCGTGGAGCTGGGTGCTGGCACGGGGCTGGTGGGCATAGTGGCTGCCCTGCTGGGTGCT LEMGAVELRGRSAV CATGTGACTATCACGGATCGAAAAGTAGCATTAGAATTTCTTAAATCAAACGTTCAAGCCAACTTACCTCCTCATATCCAAACTAAA ELGAGTGLVGIVAA ACTGTTGTTAAGGAGCTGACTTGGGGACAAAATTTGGGGAGTTTTTCTCCTGGAGAATTTGACCTGATACTTGGTGCTGATATCATA LLGAHVTITDRKVA TATTTAGAAGAAACATTCACAGATCTTCTTCAAACACTGGAACATCTCTGTAGCAATCACTCTGTGATTCTTTTAGCATGCCGAATT LEFLKSNVQANLPP CGCTATGAACGGGATAACAACTTCTTAGCAATGCTGGAGAGGCAATTTATTGTGAGAAAGGTTCACTACGATCCTGAAAAAGATGTA HIQTKTVVKELTWG CATATTTACGAAGCACAGAAGAGAAACCAGAAGGAGGACTTATAATTGGCTATAATTTATAAGAATGTTGTCATTGAGTGTGTCACT QNLGSFSPGEFDLI TAAGGTCTTAGACTGCAAATCTAACCATATTTAATGAAATGTCTTACTGTACAAAAAGTCTAAGCCAAAGGTTCTCAGGGGAGAAAG LGADIIYLEETFTD CACATGTGCAGTTTTAAAACAAAGCAGTGCTTTGTCCCATTGCTGTGATTTTTAGTCAGACTTTACTCAGTCTGAAATGCAATTAAC LLQTLEHLCSKHSV ATTAAAGGATTAAGTGTGAGATTTCGATTTATGCTATTTGTGTATCCCATACTCCTCCCTTTTAATAAACAGTTTCCACTGATGATA ILLACRIRYERDNN TGAAGGGCCGGTATAAAGAAGTCTTTAAATGAGTAAGCTTTCTTGGTAAGATTAAATCTTACAAATTATTTTTAAAACCTTGTGATA FLAMLERQFIVRKV TATACAATGTTTAGCTGAGTTTTCTAATTTTCTGGATGTAAAACAAAAGGTTTAACCTATACATTCCTTGAGCTGTTAGTGCTATTT HYDPEKDVHIYEAQ AAATCTTTTGCCCTGTTTAGGTCCTAAACACTTTTAGTTGAGTAGGATATGAGCTTTTTTGGGTCTCATATCATGCTTTTTGCCTTA KRNQKEDL ATTTCAGGTATATATATATATAAGTAAAGGAATTAAGTAAAAATAAAATTTCAGTTACTTTTTAAAAGCACCTGAAATCTGGCCGGA TGCGGTGGCTCATGCCTGTAATCCCACCACTTTGGGAGGCCGAGGCGGGCAGATCACCTGAGGTCGGGAGTTCAAGACCAGCCTGGC CAACATGGTGAAACCCCATCTCTACTAAAAATACAAAAATTAGCCGGGCGTGGTGTCGGGCGCCTGTAGTCCCAGCTGCTCGGGAGG CTGAGGCAGGGGAATCGCTTGAACCTGGGAGGCGGAGGTTGCAGTGAGCTGAGATTGCGCCATTGTACTCCAGCCTGGGGGACAGGA GCGAGACTCCATCTCAAAAAAAAAAAAAAA <SEQIDNO.:6 SEQIDNO.:53 GTGCAGAAGGCACGAGGAAGCCACAGTGCTCCGGATCCTCCAATCTTCGCTCCTCCAATCTCCGCTCCTCCACCCAGTTCAGGAACC MSLLSSRAARVPGP GGCGACCGCTCGCAGCGCTCTCTTGACCACTATGAGCCTCCTGTCCAGCCGCGCGGCCCGTGTCCCCGGTCCTTCGAGCTCCTTGTG SSSLCALLVLLLLL CGCGCTGTTGGTGCTGCTGCTGCTGCTGACGCAGCCAGGGCCCATCGCCAGCGCTGGTCCTGCCGCTGCTGTGTTGAGAGAGCTGCG TQPGPIASAGPAAA TTGCGTTTGTTTACAGACCACGCAAGGAGTTCATCCCAAAATGATCAGTAATCTGCAAGTGTTCGCCATAGGCCCACAGTGCTCCAA VLRELRCVCLQTTQ GGTGGAAGTGGTAGCCTCCCTGAAGAACGGGAAGGAAATTTGTCTTGATCCAGAAGCCCCTTTTCTAAAGAAAGTCATCCAGAAAAT GVHPKMISNLQVFA TTTGGACGGTGGAAACAAGGAAAACTGATTAAGAGAAATGAGCACGCATGGAAAAGTTTCCCAGTCTTCAGCAGAGAAGTTTTCTGG IGPQCSKVEVVASL AGGTCTCTGAACCCAGGGAAGACAAGAAGGAAAGATTTTGTTGTTGTTTGTTTATTTGTTTTTCCAGTAGTTAGCTTTCTTCCTGGA KNGKEICLDPEAPF TTCCTCACTTTGAAGAGTGTGAGGAAAACCTATGTTTGCCGCTTAAGCTTTCAGCTCAGCTAATGAAGTGTTTAGCATAGTACCTCT LKKVIQKILDGGNK GCTATTTGCTGTTATTTTATCTGCTATGCTATTGAAGTTTTGGCAATTGACTATAGTGTGAGCCAGGAATCACTGGCTGTTAATCTT EN TCAAAGTGTCTTGAATTGTAGGTGACTATTATATTTCCAAGAAATATTCCTTAAGATATTAACTGAGAAGGCTGTGGATTTAATGTG GAAATGATGTTTCATAAGAATTCTGTTGATGGAAATACACTGTTATCTTCACTTTTATAAGAAATAGGAAATATTTTAATGTTTCTT GGGGAATATGTTAGAGAATTTCCTTACTCTTGATTGTGGGATACTATTTAATTATTTCACTTTAGAAAGCTGAGTGTTTCACACCTT ATCTATGTAGAATATATTTCCTTATTCAGAATTTCTAAAAGTTTAAGTTCTATGAGGGCTAATATCTTATCTTCCTATAATTTTAGA CATTCTTTATCTTTTTAGTATGGCAAACTGCCATCATTTACTTTTAAACTTTGATTTTATATGCTATTTATTAAGTATTTTATTAGG AGTACCATAATTCTGGTAGCTAAATATATATTTTAGATAGATGAAGAAGCTAGAAAACAGGCAAATTCCTGACTGCTAGTTTATATA GAAATGTATTCTTTTAGTTTTTAAAGTAAAGGCAAACTTAACAATGACTTGTACTCTGAAAGTTTTGGAAACGTATTCAAACAATTT GAATATAAATTTATCATTTAGTTATAAAAATATATAGCGACATCCTCGAGGCCCTAGCATTTCTCCTTGGATAGGGGACCAGAGAGA GCTTGGAATGTTAAAAACAAAACAAAACAAAAAAAAACAAGGAGAAGTTGTCCAAGGGATGTCAATTTTTTATCCCTCTGTATGGGT TAGATTTTCCAAAATCATAATTTGAAGAAGGCCAGCATTTATGGTAGAATATATAATTATATATAAGGTGGCCACGCTGGGGCAAGT TCCCTCCCCACTCACAGCTTTGGCCCCTTTCACAGAGTAGAACCTGGGTTAGAGGATTGCAGAAGACGAGCGGCAGCGGGGAGGGCA GGGAAGATGCCTGTCGGGTTTTTAGCACAGTTCATTTCACTGGGATTTTGAAGCATTTCTGTCTGAATGTAAAGCCTGTTCTAGTCC TGGTGGGACACACTGGGGTTGGGGGTGGGGGAAGATGCGGTAATGAAACCGGTTAGTCAGTGTTGTCTTAATATCCTTGATAATGCT GTAAAGTTTATTTTTACAAATATTTCTGTTTAAGCTATTTCACCTTTGTTTGGAAATCCTTCCCTTTTAAAGAGAAAATGTGACACT TGTGAAAAGGCTTGTAGGAAAGCTCCTCCCTTTTTTTCTTTAAACCTTTAAATGACAAACCTAGGTAATTAATGGTTGTGAATTTCT ATTTTTGCTTTGTTTTTAATGAACATTTGTCTTTCAGAATAGGATTCTGTGATAATATTTAAATGGCAAAAACAAAACATAATTTTG TGCAATTAACAAAGCTACTGCAAGAAAAATAAAACATTTCTTGGTAAAAACGTATGTATTTATATATTATATATTTATATATAATAT ATATTATATATTTAGCATTGCTGAGCTTTTTAGATGCCTATTGTGTATCTTTTAAAGGTTTTGACCATTTTGTTATGAGTAATTACA TATATATTACATTCACTATATTAAAATTGTACTTTTTTACTATGTGTCTCATTGGTTCATAGTCTTTATTTTGTCCTTTGAATAAAC ATTAAAAGATTTCTAAACTTCAAAAAAAAAAAAAAAAAA SEQIDNO.:7 SEQIDNO.:54 CTGGACGAGTCCGAGCGCGTCACCTCCTCACGCTGCGGCTGTCGCCCGTGTCCCGCCGGCCCGTTCCGTGTCGCCCCGCAGTGCTGC MAVFVVLLALVAGV GGCCGCCGCGGCACCATGGCTGTGTTTGTCGTGCTCCTGGCGTTGGTGGCGGGTGTTTTGGGGAACGAGTTTAGTATATTAAAATCA LGNEFSILKSPGSV CCAGGGTCTGTTGTTTTCCGAAATGGAAATTGGCCTATACCAGGAGAGCGGATCCCAGACGTGGCTGCATTGTCCATGGGCTTCTCT VFRNGNWPIPGERI GTCAAAGAAGACCTTTCTTGGCCAGGACTCGCAGTGGGTAACCTGTTTCATCGTCCTCGGGCTACCGTCATGGTGATGGTGAAGGGA PDVAALSMGFSVKE GTGAACAAACTGGCTCTACCCCCAGGCAGTGTCATTTCGTACCCTTTGGAGAATGCAGTTCCTTTTAGTCTTGACAGTGTTGCAAAT DLSWPGLAVGNLFH TCCATTCACTCCTTATTTTCTGAGGAAACTCCTGTTGTTTTGCAGTTGGCTCCCAGTGAGGAAAGAGTGTATATGGTAGGGAAGGCA RPRATVMVMVKGVN AACTCAGTGTTTGAAGACCTTTCAGTCACCTTGCGCCAGCTCCGTAATCGCCTGTTTCAAGAAAACTCTGTTCTCAGTTCACTCCCC KLALPPGSVISYPL CTCAATTCTCTGAGTAGGAACAATGAAGTTGACCTGCTCTTTCTTTCTGAACTGCAAGTGCTACATGATATTTCAAGCTTGCTGTCT ENAVPFSLDSVANS CGTCATAAGCATCTAGCCAAGGATCATTCTCCTGATTTATATTCACTGGAGCTGGCAGGTTTGGATGAAATTGGGAAGCGTTATGGG IHSLFSEETPVVLQ GAAGACTCTGAACAATTCAGAGATGCTTCTAAGATCCTTGTTGACGCTCTGCAAAAGTTTGCAGATGACATGTACAGTCTTTATGGT LAPSEERVYMVGKA GGGAATGCAGTGGTAGAGTTAGTCACTGTCAAGTCATTTGACACCTCCCTCATTAGGAAGACAAGGACTATCCTTGAGGCAAAACAA NSVFEDLSVTLRQL GCGAAGAACCCAGCAAGTCCCTATAACCTTGCATATAAGTATAATTTTGAATATTCCGTGGTTTTCAACATGGTACTTTGGATAATG RNRLFQENSVLSSL ATCGCCTTGGCCTTGGCTGTGATTATCACCTCTTACAATATTTGGAACATGGATCCTGGATATGATAGCATCATTTATAGGATGACA PLNSLSRNNEVDLL AACCAGAAGATTCGAATGGATTGAATGTTACCTGTGCCAGAATTAGAAAAGGGGGTTGGAAATTGGCTGTTTTGTTAAAATATATCT FLSELQVLHDISSL TTTAGTGTGCTTTAAAGTAGATAGTATACTTTACATTTATAAAAAAAAATCAAATTTTGTTCTTTATTTTGTGTGTGCCTGTGATGT LSRHKHLAKDHSPD TTTTCTAGAGTGAATTATAGTATTGACGTGAATCCCACTGTGGTATAGATTCCATAATATGCTTGAATATTATGATATAGCCATTTA LYSLELAGLDEIGK ATAACATTGATTTCATTCTGTTTAATGAATTTGGAAATATGCACTGAAAGAAATGTAAAACATTTAGAATAGCTCGTGTTATGGAAA RYGEDSEQFRDASK AAAGTGCACTGAATTTATTAGACAAACTTACGAATGCTTAACTTCTTTACACAGCATAGGTGAAAATCATATTTGGGCTATTGTATA ILVDALQKFADDMY CTATGAACAATTTGTAAATGTCTTAATTTGATGTAAATAACTCTGAAACAAGAGAAAAGGTTTTTAACTTAGAGTAGCCCTAAAATA SLYGGNAVVELVTV TGGATGTGCTTATATAATCGCTTAGTTTTGGAACTGTATCTGAGTAACAGAGGACAGCTGTTTTTTAACCCTCTTCTGCAAGTTTGT KSFDTSLIRKTRTI TGACCTACATGGGCTAATATGGATACTAAAAATACTACATTGATCTAAGAAGAAACTAGCCTTGTGGAGTATATAGATGCTTTTCAT LEAKQAKNPASPYN TATACACACAAAAATCCCTGAGGGACATTTTGAGGCATGAATATAAAACATTTTTATTTCAGTAACTTTTCCCCCTGTGTAAGTTAC LAYKYNFEYSVVFN TATGGTTTGTGGTACAACTTCATTCTATAGAATATTAAGTGGAAGTGGGTGAATTCTACTTTTTATGTTGGAGTGGACCAATGTCTA MVLWIMIALALAVI TCAAGAGTGACAAATAAAGTTAATGATGATTCCAAAAAAAAAA ITSYNIWNMDPGYD SIIYRMTNQKIRMD SEQIDNO.:8 SEQIDNO.:55 AGCGGGGCAGCGGCTGCGCCCTGCGCCGGGGCGGAGCCGGGGGCGGGCCGGCGGCCCGGCGGCGGGGGCTGGGGCCCGAGGCCGGGA MEILMTVSKFASIC GTGCCTGAGCGCCGGCGGCGACGACGGCAGCGGCGGCCCAGCGGGCTCGGTGGTTGGGTCCGCGGCGGCTCGGGGTCCGCCCGCGGG TMGANASALEKEIG CTGCGGTGCGAGCGGGCGGCCCGGCTCCCCTCCTCCCCCGCCCGCCGCCGCCGCTGTGATTGGGTGGAAGATGGCGCTGGCCGGATG PEQFPVNEHYFGLV GAAATCCTAATGACAGTCTCCAAATTCGCCTCCATCTGTACCATGGGCGCCAATGCTTCGGCATTAGAGAAAGAGATTGGTCCAGAA NFGNTCYCNSVLQA CAGTTTCCGGTCAATGAGCACTATTTTGGATTAGTCAATTTTGGGAATACCTGCTACTGCAATTCAGTTCTTCAAGCACTTTATTTT LYFCRPFREKVLAY TGTCGTCCATTTCGGGAAAAAGTTCTTGCGTATAAGAGTCAACCTAGGAAAAAGGAGAGCCTTCTTACATGCTTAGCAGATCTCTTC KSQPRKKESLLTCL CATAGCATAGCCACTCAGAAGAAAAAGGTTGGAGTAATACCCCCTAAGAAGTTCATCACAAGATTACGGAAAGAAAATGAGCTTTTT ADLFHSIATQKKKV GACAACTACATGCAACAAGATGCCCATGAATTCTTAAATTACCTACTAAATACAATTGCTGATATTTTACAAGAAGAGAGAAAGCAG GVIPPKKFITRLRK GAAAAACAAAATGGTCGTTTACCTAATGGTAATATTGATAATGAAAATAATAACAGCACACCAGACCCAACGTGGGTTGATGAGATT ENELFDNYMQQDAH TTTCAGGGAACATTAACTAATGAAACCAGATGTCTTACTTGTGAAACTATAAGCAGCAAAGATGAAGATTTTTTAGACCTTTCTGTT EFLNYLLNTIADIL GACGTGGAACAAAATACATCAATTACTCACTGCTTAAGGGGTTTCAGCAACACAGAAACTCTGTGCAGTGAATACAAGTATTACTGT QEERKQEKQNGRLP GAAGAGTGTCGCAGCAAACAGGAAGCACACAAACGGATGAAAGTTAAAAAACTGCCCATGATTCTAGCTCTACACCTGAAGAGATTT NGNIDNENNNSTPD AAATATATGGATCAACTTCATCGATATACAAAACTCTCTTACCGGGTAGTTTTTCCTTTAGAACTTCGTCTGTTTAACACTTCAGGT PTWVDEIPQGTLTN GATGCCACCAATCCAGACAGAATGTACGACCTTGTTGCTGTTGTGGTTCACTGTGGAAGTGGTCCCAATCGAGGCCATTATATTGCA ETRCLTCETISSKD ATAGTTAAGAGTCATGATTTTTGGTTGTTGTTTGATGACGACATTGTAGAAAAAATAGATGCACAAGCTATTGAAGAATTCTACGGG EDFLDLSVDVEQNT TTGACATCAGATATCTCAAAGAACTCTGAGTCTGGTTACATCCTTTTCTATCAGTCTCGGGACTGAGAGGGAACCGTGATGAAGAGA SITHCLRGFSNTET CACTTTCTGCCTCATTTCTTCTCTGGTTATTTTGGAAAGGATCAAGCACTGATTTTTCAAGAAAAGAGAAATGCAGGAAGCTCAGGG LCSEYKYYCEECRS GGCAGTAGCACACTTTGCACACGATAAAGCAAAGACGATGGATTGACAAGCCCTTCCGATCATGGTAGTTGATTTATTTGCTCAGGT KQEAHKRMKVKKLP ATCATGCTGTCTGTACAGTTCCATACAACAAGGAGGTGAAATCAGAGATACCAGCTCCTCTTTTAAAACAGCCTTCCAGTCATTGGC MILALHLKRFKYMD ACGCATTTTCTCTTTATTAATTGCACCAATAATGCTTTGAATTCCTTGGGGGTGCAGTAGAAAGAATCGGAATCTGTGCCGTATTGA QLHRYTKLSYRVVF TAAGGAGATGATGTTGAACACACTGCATAAATTTGCCTGGTTCAGTATGTATAGAAGCATATTCAGTGGTCTTTTCAAGAGTAAACC PLELRLFNTSGDAT AGAAATACTTTTGGGCCCAACACTTGCAGTTGCCTTCCTGATGTAAAAACTAACATGCTAGATAATCCAGTGTCGGGAAGACAAAGA NPDRMYDLVAVVVH TGTTTTGCTTCTCTGAAGAAGCTTATAATAATATACAGTATATGTATATGTAGGGAGCAATTGGTCAAAAGTGGCTTTTTGTTTCCC CGSGPNRGHYIAIV CAAGGGGAAAGACTGGCTTTGTAATTATAATTTTTTCCTTATTTATTTTACTTAAAACTGGTAGAGTCTAAGTATTATATGAAGTGC KSKDFWLLFDDDIV CCATGATTCTGTCAGTAAATTTGAACATATTTTTATTAGTTAATGTCAGTTTAAGTTGTCCTTTTGTTTGTTTCTATTTTTAAGGTG EKIDAQAIEEFYGL AATTTTAATTTCTATCTGAAATCAGTTAAGATACCTTGAGAAAAACTGCAGTGAGAGGAGATAAATATCCTTTTTCAGGAGGAACTG TSDISKNSESGYIL ATATCTCTGGCTAAATATTTGTCCTTTTATTATGGTTTCTAAATCAGTTATTTTCTTCAGCTTTAATTTCATAAAATTAAAAAACTA FYQSRD TTTTAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA SEQIDNO.:9 SEQIDNO.:56 GGAAGCCATTGCCTGTTTAATAGTTGCTGTTGCTGCACTTCCGCTTCTCTCCCAGCGAGAGAGAGACACGAGTGGCCAGGCCCAGCC MSDDDSRASTSSSS GCAGCCGCAGCAGCAGCCGCCGCGGCGGCACGGAGGAGCCAGACACAAAGAGAGGGGCTGTTTGCGGGGTGGGGTGGGGGGTTCGCT SSSSNQQTEKETNT ATGTCGGATGACGATTCGAGGGCCAGCACCAGCTCCTCCTCATCTTCGTCTTCCAACCAGCAAACCGAGAAAGAAACAAACACCCCC PKKKESKVSMSKNS AAGAAGAAGGAGAGTAAAGTCAGCATGAGCAAAAACTCCAAACTCCTCTCCACCAGCGCCAAGAGAATTCAGAAGGAGCTGGCGGAC KLLSTSAKRIQKEL ATCACTTTAGACCCTCCACCTAATTGCAGTGCTGGTCCCAAAGGCGATAACATCTATGAATGGAGATCAACCATTCTAGGGCCTCCA ADITLDPPPNCSAG GGATCCGTGTATGAGGGTGGTGTATTCTTTCTGGATATCACTTTTACACCAGAATATCCCTTCAAGCCTCCAAAGGTTACATTTCGG PKGDNIYEWRSTIL ACAAGAATCTATCATTGTAATATTAACAGTCAAGGTGTTATTTGCTTGGACATATTGAAAGATAATTGGAGTCCAGCACTAACCATT GPPGSVYEGGVFFL TCTAAAGTCCTCCTTTCTATCTGCTCACTTCTTACAGACTGTAATCCTGCCGACCCCTTGGTGGGAAGTATTGCCACTCAGTATATG DITFTPEYPFKPPK ACCAACAGAGCAGAACATGACAGAATGGCCAGACAGTGGACCAAGAGATACGCTACATAAATTGGGGTTTCACAATTCTTACATTAT VTFRTRIYHCNINS TTGTCTGTCACAGAAGAGAGCTGCTTATGATTTTGAAGGGGTCAGGGAGGGTGGGAGTTGGTAAAGAGTAGGGTATTTCTATAACAG QGVICLDILKDNWS ATATTATTCAGTCTTATTTCCTAAGATTTTGTTGTAACTTAAGGTATCTTGCTACAGTAGACAGAATTGGTAATAGCAACTTTTAAA PALTISKVLLSICS ATTGTCATTAGTTCTGCAATATTAGCTGAAATGTAGTACAGAAAAGAATGTACATTTAGACATTTGGGTTCAGTTGCTTGTAGTCTG LLTDCNPADPLVGS TAAATTTAAAACAGCTTAATTTGGTACAGGTTACACATATGGCCATTTATGTAAAGTCCCTCTAAGACTACATACTTTTTGTTTAAA IATQYMTNRAEHDR ACAAAATTGGAATTTGTTTTCCCTTCTTGGAAGGGAACATTGATATTTAACAGAGTTTTTAGAGATTGTCATCTCATATATATAAAA MARQWTKRYAT TGGACACGTGGCTATAAAACACCATATAAGAGATGAGTAGTGCGTTTTATTTTATATGCCAATCTACTTTGTTTAAAAAAGGTCTGA ATCAGGACTTGTGAAAACCTGTAGTGAAATACCTTAAGCTGTTAACTAACTGTAAGGCGTGGAATAGGAGTTGCTCAGTGGATTGGT TCTATGTTGTGGACTACTTAAGTCTGCATTTGTTACTGTGCTAATAAACAATATTAAAAACCACCTAATAAACAAAAAAAAAAAAAA SEQIDNO.:10 SEQIDNO.:57 TTGCTTTCCTCTGCCGCATGGTCCTGGGCCGTTGGCGTCGGAAGCCTGAAGCATGGGCGCTGAGTGGGAGCTGGGGGCCGAGGCTGG MGAEWELGAEAGGS CGGTTCGCTGCTGCTGTGCGCCGCGCTGCTGGCGGCGGGCTGCGCCCTGGGCCTGCGCCTGGGCCGCGGGCAGGGGGCGGCGGACCG LLLCAALLAAGCAL CGGGGCGCTCATCTGGCTCTGCTACGACGCGCTGGTGCACTTCGCGCTGGAAGGCCCTTTTGTCTACTTGTCTTTAGTAGGAAACGT GLRLGRGQGAADRG TGCAAATTCCGATGGCTTGATTGCTTCTTTATGGAAAGAATATGGCAAAGCTGATGCAAGATGGGTTTATTTTGATCCAACCATTGT ALIWLCYDALVHFA GTCTGTGGAAATTCTGACCGTCGCCCTGGATGGGTCTCTGGCATTGTTCCTCATTTATGCCATAGTCAAAGAAAAATATTACCGGCA LEGPPVYLSLVGNV TTTCCTGCAGATCACCCTGTGCGTGTGCGAGCTGTATGGCTGCTGGATGACCTTCCTCCCAGAGTGGCTCACCAGAAGCCCCAACCT ANSDGLIASLWKEY CAACACCAGCAACTGGCTGTACTGTTGGCTTTACCTGTTTTTTTTTAACGGTGTGTGGGTTCTGATCCCAGGACTGCTACTGTGGCA GKADARWVYFDPTI GTCATGGCTAGAACTCAAGAAAATGCATCAGAAAGAAACCAGTTCAGTGAAGAAGTTTCAGTGAACTTTCAAAACCATAAACACCAT VSVEILTVALDGSL TATCTAACTTCATGAACCAGAATGAATCAAATCTTTTTGTTTGGCCAAAATGTAATACATTCCAGTCTACACTTTGTTTTTGTATTG ALFLIYAIVKEKYY TTGCTCCTGAACAACCTGTTTCAAATTGGTTTTAAGGCGACCAGTTTTCGTTGTATTGTTGTTCAATTAAATGGTGATATAGGGAAA RHFLQITLCVCELY AGAGAACAAATTTGAATTTGTAATAATAAAATGTTTAATTATACAAAAAAAAAAAAAAAAA GCWMTFLPEWLTRS PNLNTSNWLYCWLY LFFFNGVWVLIPGL LLWQSWLELKKMHQ KETSSVKKFQ SEQIDNO.:11 SEQIDNO.:58 GGTCGTTTTCTGATGTGACGGCTGAGACATGAGATCTTCAGCCTCCAGGCTCTCCAGTTTTTCGTCGAGAGATTCACTATGGAATCG MRSSASRLSSFSSR GATGCCGGACCAGATCTCTGTCTCGGAGTTCATCGCCGAGACCACCGAGGACTACAACTCGCCCACCACGTCCAGCTTCACCACGCG DSLWNRMPDQISVS GCTGCACAACTGCAGGAACACCGTCACGCTGCTGGAGGAGGCTCTAGACCAAGATAGAACAGCCCTTCAGAAAGTGAAGAAGTCTGT EFIAETTEDYNSPT AAAAGCAATATATAATTCTGGTCAAGATCATGTACAAAATGAAGAAAACTATGCACAAGTTCTTGATAAGTTTGGGAGTAATTTTTT TSSFTTRLHNCRNT AAGTCGAGACAACCCCGACCTTGGCACCGCGTTTGTCAAGTTTTCTACTCTTACAAAGGAACTGTCCACACTGCTGAAAAATCTGCT VTLLEEALDQDRTA CCAGGGTTTGAGCCACAATGTGATCTTCACCTTGGATTCTTTGTTAAAAGGAGACCTAAAGGGAGTCAAAGGAGATCTCAAGAAGCC LQKVKKSVKAIYNS ATTTGACAAAGCCTGGAAAGATTATGAGACAAAGTTTACAAAAATTGAGAAAGAGAAAAGAGAGCACGCAAAACAACATGGGATGAT GQDHVQNEENYAQV CCGCACAGAGATAACAGGAGCTGAGATTGCGGAAGAAATGGAGAAGGAAAGGCGCCTCTTTCAGCTCCAAATGTGTGAATATCTCAT LDKFGSNFLSRDNP TAAAGTTAATGAAATCAAGACCAAAAAGGGTGTGGATCTGCTGCAGAATCTTATAAAGTATTACCATGCACAGTGCAATTTCTTTCA DLGTAFVKFSTLTK AGATGGCTTGAAAACAGCTGATAAGTTGAAACAGTACATTGAAAAACTGGCTGCTGATTTATATAATATAAAACAGACCCAGGATGA ELSTLLKNLLQGLS AGAAAAGAAACAGCTAACTGCACTCCGAGACTTAATAAAATCCTCTCTTCAACTGGATCAGAAAGAAGATTCTCAGAGCCGGCAAGG HNVIFTLDSLLKGD AGGATACAGCATGCATCAGCTCCAGGGCAATAAGGAATATGGCAGTGAAAAGAAGGGGTACCTGCTAAAGAAAAGTGACGGGATCCG LKGVKGDLKKPFDK GAAAGTATGGCAGAGGAGGAAGTGTTCAGTCAAGAATGGGATTCTGACCATCTCACATGCCACATCTAACAGGCAACCAGCCAAGTT AWKDYETKFTKIEK GAACCTTCTCACCTGCCAAGTAAAACCTAATGCCGAAGACAAAAAATCTTTTGACCTGATATCACATAATAGAACATATCACTTTCA EKREHAKQHGMIRT GGCAGAAGATGAGCAGGATTATGTAGCATGGATATCAGTATTGACAAATAGCAAAGAAGAGGCCCTAACCATGGCCTTCCGTGGAGA EITGAEIAEEMEKE GCAGAGTGCGGGAGAGAACAGCCTGGAAGACCTGACAAAAGCCATTATTGAGGATGTCCAGCGGCTCCCAGGGAATGACATTTGCTG RRLFQLQMCEYLIK CGATTGTGGCTCATCAGAACCCACCTGGCTTTCAACCAACTTGGGTATTTTGACCTGTATAGAATGTTCTGGCATCCATAGGGAAAT VNEIKTKKGVDLLQ GGGGGTTCATATTTCTCGCATTCAGTCTTTGGAACTAGACAAATTAGGAACTTCTGAACTCTTGCTGGCCAAGAATGTAGGAAACAA NLIKYYHAQCNFFQ TAGTTTTAATGATATTATGGAAGCAAATTTACCCAGCCCCTCACCAAAACCCACCCCTTCAAGTGATATGACTGTACGAAAAGAATA DGLKTADKLKQYIE TATCACTGCAAAGTATGTAGATCATAGGTTTTCAAGGAAGACCTGTTCAACTTCATCAGCTAAACTAAATGAATTGCTTGAGGCCAT KLAADLYNIKQTQD CAAATCCAGGGATTTACTTGCACTAATTCAAGTCTATGCAGAAGGGGTAGAGCTAATGGAACCACTGCTGGAACCTGGGCAGGAGCT EEKKQLTALRDLIK TGGGGAGACAGCCCTTCACCTTGCCGTCCGAACTGCAGATCAGACATCTCTCCATTTGGTTGACTTCCTTGTACAAAACTGTGGGAA SSLQLDQKEDSQSR CCTGGATAAGCAGACGGCCCTGGGAAACACAGTTCTACACTACTGTAGTATGTACAGTAAACCTGAGTGTTTGAAGCTTTTGCTCAG QGGYSMHQLQGNKE GAGCAAGCCCACTGTGGATATAGTTAACCAGGCTGGAGAAACTGCCCTAGACATAGCAAAGAGACTAAAAGCTACCCAGTGTGAAGA YGSEKKGYLLKKSD TCTGCTTTCCCAGGCTAAATCTGGAAAGTTCAATCCACACGTCCACGTAGAATATGAGTGGAATCTTCGACAGGAGGAGATAGATGA GIRKVWQRRKCSVK GAGCGATGATGATCTGGATGACAAACCAAGCCCTATCAAGAAAGAGCGCTCACCCAGACCTCAGAGCTTCTGCCACTCCTCCAGCAT NGILTISHATSNRQ CTCCCCCCAGGACAAGCTGGCACTGCCAGGATTCAGCACTCCAAGGGACAAACAGCGGCTCTCCTATGGAGCCTTCACCAACCAGAT PAKLNLLTCQVKPN CTTCGTTTCCACAAGCACAGACTCGCCCACATCACCAACCACGGAGGCTCCCCCTCTGCCTCCTAGGAACGCCGGGAAAGGTCCAAC AEDKKSFDLISHNR TGGCCCACCTTCAACACTCCCTCTAAGCACCCAGACCTCTAGTGGCAGCTCCACCCTATCCAAGAAGAGGCCTCCTCCCCCACCACC TYHFQAEDEQDYVA CGGACACAAGAGAACCCTATCCGACCCTCCCAGCCCACTACCTCATGGGCCCCCAAACAAAGGCGCAGTTCCTTGGGGTAACGATGG WISVLTNSKEEALT GGGTCCATCCTCTTCAAGTAAGACTACAAACAAGTTTGAGGGACTATCCCAGCAGTCGAGCACCAGTTCTGCAAAGACTGCCCTTGG MAFRGEQSAGENSL CCCAAGAGTTCTTCCTAAACTACCTCAGAAAGTGGCACTAAGGAAAACAGATCATCTCTCCCTAGACAAAGCCACCATCCCGCCCGA EDLTKAIIEDVQRL AATCTTTCAGAAATCATCACAGTTGGCAGAGTTGCCACAAAAGCCACCACCTGGAGACCTGCCCCCAAAGCCCACAGAACTGGCCCC PGNDICCDCGSSEP CAAGCCCCAAATTGGAGATTTGCCGCCTAAGCCAGGAGAACTGCCCCCCAAACCACAGCTGGGGGACCTGCCACCCAAACCCCAACT TWLSTNLGILTCIE CTCAGACTTACCTCCCAAACCACAGATGAAGGACCTGCCCCCCAAACCACAGCTGGGAGACCTGCTAGCAAAATCCCAGACTGGAGA CSGIHREMGVHISR TGTCTCACCCAAGGCTCAGCAACCCTCTGAGGTCACACTGAAGTCACACCCATTGGATCTATCCCCAAATGTGCAGTCCAGAGACGC IQSLELDKLGTSEL CATCCAAAAGCAAGCATCTGAAGACTCCAACGACCTCACGCCTACTCTGCCAGAGACGCCCGTACCACTGCCCAGAAAAATCAATAC LLAKNVGNNSFNDI GGGGAAAAATAAAGTGAGGCGAGTGAAGACCATTTATGACTGCCAGGCAGACAACGATGACGAGCTCACATTCATCGAGGGAGAAGT MEANLPSPSPKPTP GATTATCGTCACAGGGGAAGAGGACCAGGAGTGGTGGATTGGCCACATCGAAGGACAGCCTGAAAGGAAGGGGGTCTTTCCAGTGTC SSDMTVRKEYITAK CTTTGTTCATATCCTGTCTGACTAGCAAAACGCAGAACCTTAAGATTGTCCACATCCTTCATGCAAGACTGCTGCCTTCATGTAACC YVDHRFSRKTCSTS CTGGGCACAGTGTGTATATAGCTGCTGTTACAGAGTAAGAAACTCATGGAAGGGCCACCTCAGGAGGGGGATATAATGTGTGTTGTA SAKLNELLEAIKSR AATATCCTGTGGTTTTCTGCCTTCACCAGTATGAGGGTAGCCTCGGACCCGGCGCGCCTTACTGGTTTGCCAAAGCCATCCTTGGCA DLLALIQVYAEGVE TCTAGCACTTACATCTCTCTATGCTGTTCTACAAGCAAACAAACAAAAATAGGAGTATAGGAACTGCTGGCTTTGCAAATAGAAGTG LMEPLLEPGQELGE GTCTCCAGCAACCGTTGAAAGGCATAGAATTGACTCTGTTCCTAACAATGCAGTATTCTCAATTGTGTTACTGAAAATGCAACATTA TALHLAVRTADQTS GCAAAGAGGTGGGTTCTGTTTTCCAGGTGAAACTTTTAGCTCCATGACAGACCAGCCTGTAGTTATCTGTGTACACAGTTTACAGCT LHLVDFLVQNCGNL ACAAAAACCTACTTTGGTATTTATTACAGAAAAGTGCTCAGTTAATGTAAGTGTTATTCCTTCAGCAAAATATTCACTGACCCAAAA DKQTALGNTVLHYC CTCTTTATGGCATTTTACAATGCACACAGCCTCATGCAAGTTTAGACAAGTGGATTTATACTGTCTTATGAGTGCCCGCCCCTGATA SMYSKPECLKLLLR TATTACCTCATTATGCAAAAATAACATATCTTTCATGACTATTTTGACAAAAGTTTAAAACACATATGAAGTTCAAATTTCAGGAAC SKPTVDIVNQAGET CAAGGACTGCCAGAAAATATTAGCCTCTACATTACGCATGCATTTAGAAGCTTACCTGAAATCTGCCTTTTATAAAGGAATAGTATG ALDIAKRLKATQCE GATAAGTGGAATTGTACATTTTTTAAACTTGATTGCCATTAAAGCAGAAATTATAAGGTTGCAACAATATTTGTTTCTAATCACTGG DLLSQAKSGKFNPH CTTTCTCAAGAGTATGGATTGACATATTGTGTTATGAATGCACATCTCTCAGATGTGTTGAAGCATCCATTGCATCCATTTTTTATT VHVEYEWNLRQEEI ATTTTCTTAGTTTTGTTCTTGGACAAATTTAAACTTTTAAAAGATTATTCAAGATGAATTTAAAAGTCAACCCTTCACACAGTTTCC DESDDDLDDKPSPI CTACTGTATGTAGAATCCAGGTGCTGAAACCAAGTGTTTCTTTTCCCATGCTCTTTGTTAAACCCCAATTATAGATAATTTTTCCAG KKERSPRPQSFCHS TCTTAAGCTCTGTCCACCTTCAAGTCAATTCATAACCAAGTTTTTGAACGCTGCTATGAATTGCACTGTGAAAAGCACTCTTCCCTC SSISPQDKLALPGF TCAGTTTTCTTTTCATCCCAGCCATGTTTATCAGATCCTTAAGAACATTGTATTTCAGTCTTTTACATCAGTCTGAATTTTGGAAAA STPRDKQRLSYGAF GAATGCAATAGTTGTACTCCACAGTCAGTGGAACTGTTCCCTGAGTCCGAGGCTCATGTGTCATTCTGGCACTACATTTGCTTAAAT TNQIFVSTSTDSPT TGCTATTTTGGCAACAGCACAGAAAACTAATATTTTTAAGCAGAGAATCTTGGCAATGAGTGAGAGATGTTAATTTCACAGAAGCAC SPTTEAPPLPPRNA AACTCCCAACCCAACCCTTAGGAAAAGCCCTCTTCCATCGTTACAGTGCTCAGTGAATATTAATTTAGTTCTGCTTAAGTGGTTGCT GKGPTGPPSTLPLS ATACAAACTTTGAATAGCCACCTAATAAATAAACCTTGCATGACAAACCTGCAAAATATTTTATCAGCTGTTATTGGAAAGTGATTT TQTSSGSSTLSKKR TAAGCAATTGCTTCCTCAGTGTCAGGGCACATGTGAATTTCCACACCAAACAGAGCATGAGGAACCAGTTGACATGCTGGGTTGTGA PPPPPPGHKRTLSD CTGGCAGCTTTAGCAGCCTCGGTACTGAAGCCACACCAGTGTCCGGATGGAAGTCTGCATCTGAGGTTGCTCAGTGTCCCGGTCATT PPSPLPHGPPNKGA CATTTACACATTTTAACTTGCATTAAAGAGCTGTTCTTTTCTGTGGCCTAGACTCTTTTCACTGATCTCAAAATAAACTGGTTTTTT VPWGNDGGPSSSSK TCAAAAAAAAAAAAAAAACAAAAACAAAAAAAAAACACAAAAGCTGCATGTCTAAAATTACATGGAGTTAGTGTCTATTCTTTTTCC TTNKFEGLSQQSST CCTTTTGCAGCAACTTACACAGCATTTTTAACACCTTTTTTTTCTAGTTTTTTTGTTCGGTTTTGTTTTCCATCAGGAATTTGAGTT SSAKTALGPRVLPK CTCTCTAACCCAGCTTACTGTGGGACATAGGAAAACTCAGTAGAAATACCTTTGGTGATCTTGTTGAGTTTAAGTCTGATCTTGATC LPQKVALRKTDHLS TTAAACTCAGTAAGCCACTATCTGCAATTTTGTACATTATATAGTATTTTGAAGATATGGAACCTTATGAAAAAAAAATAGCAAATT LDKATIPPEIFQKS AGTTCTTTTTCCCCCAGAGGGGAAAGTTATGTTCTGCAAATAGTGTGTGTCTTATTTTACTGTTGAACAGCAATTGCTATTTATTTT SQLAELPQKPPPGD TTTATTGCCTAGAACTTCAACATGTTGTATAGGAATCCTGTAGTGCCACTAGTTAAATGCCGAATTCTCATCTGGATGTTACCATCA LPPKPTELAPKPQI AACATCAGTACACTTGTCATTTCACATGTGTTTAATGTGACAGTTTTTCAGTACTGTATGTGTTAATTTCTACTTTTTTTAATATTT GDLPPKPGELPPKP AAAATTGCTTTTAAATAAACATATTCTCAGTTGATCCC QLGDLPPKPQLSDL PPKPQMKDLPPKPQ LGDLLAKSQTGDVS PKAQQPSEVTLKSH PLDLSPNVQSRDAI QKQASEDSNDLTPT LPETPVPLPRKINT GKWKVRRVKTIYDC QADNDDELTFIEGE VIIVTGEEDQEWWI GHIEGQPERKGVFP VSFVHILSD SEQIDNO.:12 SEQIDNO.:59 CTTCCAGAGAGCAATATGGCTGGTTCCCCAACATGCCTCACCCTCATCTATATCCTTTGGCAGCTCACAGGGTCAGCAGCCTCTGGA MAGSPTCLTLIYIL CCCGTGAAAGAGCTGGTCGGTTCCGTTGGTGGGGCCGTGACTTTCCCCCTGAAGTCCAAAGTAAAGCAAGTTGACTCTATTGTCTGG WQLTGSAASGPVKE ACCTTCAACACAACCCCTCTTGTCACCATACAGCCAGAAGGGGGCACTATCATAGTGACCCAAAATCGTAATAGGGAGAGAGTAGAC LVGSVGGAVTFPLK TTCCCAGATGGAGGCTACTCCCTGAAGCTCAGCAAACTGAAGAAGAATGACTCAGGGATCTACTATGTGGGGATATACAGCTCATCA SKVKQVDSIVWTFN CTCCAGCAGCCCTCCACCCAGGAGTACGTGCTGCATGTCTACGAGCACCTGTCAAAGCCTAAAGTCACCATGGGTCTGCAGAGCAAT TTPLVTIQPEGGTI AAGAATGGCACCTGTGTGACCAATCTGACATGCTGCATGGAACATGGGGAAGAGGATGTGATTTATACCTGGAAGGCCCTGGGGCAA IVTQNRNRERVDFP GCAGCCAATGAGTCCCATAATGGGTCCATCCTCCCCATCTCCTGGAGATGGGGAGAAAGTGATATGACCTTCATCTGCGTTGCCAGG DGGYSLKLSKLKKN AACCCTGTCAGCAGAAACTTCTCAAGCCCCATCCTTGCCAGGAAGCTCTGTGAAGGTGCTGCTGATGACCCAGATTCCTCCATGGTC DSGIYYVGIYSSSL CTCCTGTGTCTCCTGTTGGTGCCCCTCCTGCTCAGTCTCTTTGTACTGGGGCTATTTCTTTGGTTTCTGAAGAGAGAGAGACAAGAA QQPSTQEYVLHVYE GAGTACATTGAAGAGAAGAAGAGAGTGGACATTTGTCGGGAAACTCCTAACATATGCCCCCATTCTGGAGAGAACACAGAGTACGAC HLSKPKVTMGLQSN ACAATCCCTCACACTAATAGAACAATCCTAAAGGAAGATCCAGCAAATACGGTTTACTCCACTGTGGAAATACCGAAAAAGATGGAA KNGTCVTNLTCCME AATCCCCACTCACTGCTCACGATGCCAGACACACCAAGGCTATTTGCCTATGAGAATGTTATCTAGACAGCAGTGCACTCCCCTAAG HGEEDVIYTWKALG TCTCTGCTCAAAAAAAAAACAATTCTCGGCCCAAAGAAAACAATCAGAAGAATTCACTGATTTGACTAGAAACATCAAGGAAGAATG QAANESHNGSILPI AAGAACGTTGACTTTTTTCCAGGATAAATTATCTCTGATGCTTCTTTAGATTTAAGAGTTCATAATTCCATCCACTGCTGAGAAATC SWRWGESDMTFICV TCCTCAAACCCAGAAGGTTTAATCACTTCATCCCAAAAATGGGATTGTGAATGTCAGCAAACCATAAAAAAAGTGCTTAGAAGTATT ARNPVSRNFSSPIL CCTATAGAAATGTAAATGCAAGGTCACACATATTAATGACAGCCTGTTGTATTAATGATGGCTCCAGGTCAGTGTCTGGAGTTTCAT ARKLCEGAADDPDS TCCATCCCAGGGCTTGGATGTAAGGATTATACCAAGAGTCTTGCTACCAGGAGGGCAAGAAGACCAAAACAGACAGACAAGTCCAGC SMVLLCLLLVPLLL AGAAGCAGATGCACCTGACAAAAATGGATGTATTAATTGGCTCTATAAACTATGTGCCCAGCACTATGCTGAGCTTACACTAATTGG SLFVLGLFLWFLKR TCAGACGTGCTGTCTGCCCTCATGAAATTGGCTCCAAATGAATGAACTACTTTCATGAGCAGTTGTAGCAGGCCTGACCACAGATTC ERQEEYIEEKKRVD CCAGAGGGCCAGGTGTGGATCCACAGGACTTGAAGGTCAAAGTTCACAAAGATGAAGAATCAGGGTAGCTGACCATGTTTGGCAGAT ICRSTPNICPHSGE ACTATAATGGAGACACAGAAGTGTGCATGGCCCAAGGACAAGGACCTCCAGCCAGGCTTCATTTATGCACTTGTGCTGCAAAAGAAA NTEYDTIPHTNRTI AGTCTAGGTTTTAAGGCTGTGCCAGAACCCATCCCAATAAAGAGACCGAGTCTGAAGTCACATTGTAAATCTAGTGTAGGAGACTTG LKEDPANTVYSTVE GAGTCAGGCAGTGAGACTGGTGGGGCACGGGGGGCAGTGGGTACTTGTAAACCTTTAAAGATGGTTAATTCATTCAATAGATATTTA IPKKMENPHSLLTM TTAAGAACCTATGCGGCCCGGCATGGTGGCTCACACCTGTAATCCCAGCACTTTGGGAGGCCAAGGTGGGTGGGTCATCTGAGGTCA PDTPRLFAYENVI GGAGTTCAAGACCAGCCTGGCCAACATGGTGAAACCCCATCTCTACTAAAGATACAAAAATTTGCTGAGCGTGGTGGTGTGCACCTG TAATCCCAGCTACTCGAGAGGCCAAGGCATGAGAATCGCTTGAACCTGGGAGGTGGAGGTTGCAGTGAGCTGAGATGGCACCACTGC ACTCCCGCCTAGGCAACGAGAGCAAAACTCCAATACAAACAAACAAACAAACACCTGTGCTAGGTCAGTCTGGCACGTAAGATGAAC ATCCCACCAACACAGAGCTCACCATCTCTTATACTTAAGTGAAAAACATGGGGAAGGGGAAAGGGGAATGGCTGCTTTTGATATGT TCCCTGACACATATCTTGAATGGAGACCTCCCTACCAAGTGATGAAAGTGTTGAAAAACTTAATAACAAATGCTTGTTGGGCAAGAA TGGGATTGAGGATTATCTTCTCTCAGAAAGGCATTGTGAAGGAATTGAGCCAGATCTCTCTCCCTACTGCAAAACCCTATTGTAGTA AAAAAGTCTTCTTTACTATCTTAATAAAACAGATATTGTGAGATTCAAAAAAAAAAAAAAAA SEQIDNO.:13 SEQIDNO.:60 GACTGCGCGGCCGGGAGGAGCCGAGCCGGGCGGCGGCGGCGGGAGGCTACAGCGCGCGGGGGTCTCCCGCGTCCCCTCCGCCTCGCC MSSDRCRSCDESPS GGGAGCTCGCGCCCTCGCCCAGCCGAGCTCCCACCCCCGCTTTTTTCCGAAGGCGCTGGGCGGCGCCACCCTCCGGCCGGAGCCCGG TSSGSSDADQRDPA CACTGCACAACCCCCTCCGACTTTCAATGTTCCACACTCCCCGGCCAGAGCCTCCTCGGCTTCTTTTTTTCCCTCCCCCCCCTTCCC APEPEEQEERKPSA CCCCCCACAGCTGCCTCCATTTCCTTAAGGAAGGGTTTTTTTCTCTCTCCCTCCCCCACACCGTAGCGGCGCGCGAGCGGGCCGGGC TQQKKNTKLSSKTT GGGCGGCCGAGTTTTCCAAGAGATAACTTCACCAAGATGTCCAGTGATAGGCAAAGGTCCGATGATGAGAGCCCCAGCACCAGCAGT AKLSTSAKRIQKEL GGCAGTTCAGATGCGGACCAGCGAGACCCAGCCGCTCCAGAGCCTGAAGAACAAGAGGAAAGAAAACCTTCTGCCACCCAGCAGAAG AEITLDPPPNCSAG AAAAACACCAAACTCTCTAGCAAAACCACTGCTAAGTTATCCACTAGTGCTAAAAGAATTCAGAAGGAGCTAGCTGAAATAACCCTT PKGDNIYEWRSTIL GATCCTCCTCCTAATTGCAGTGCTGGGCCTAAAGGAGATAACATTTATGAATGGAGATCAACTATACTTGGTCCACCGGGTTCTGTA GPPGSVYEGGVFFL TATGAAGGTGGTGTGTTTTTTCTGGATATCACATTTTCATCAGATTATCCATTTAAGCCACCAAAGGTTACTTTCCGCACCAGAATC DITFSSDYPFKPPK TATCACTGCAACATCAACAGTCAGGGAGTCATCTGTCTGGACATCCTTAAAGACAACTGGAGTCCCGCTTTGACTATTTCAAAGGTT VTFRTRIYHCNINS TTGCTGTCTATTTGTTCCCTTTTGACAGACTGCAACCCTGCGGATCCTCTGGTTGGAAGCATAGCCACTCAGTATTTGACCAACAGA CGVICLDILKDNWS GCAGAACACGACAGGATAGCCAGACAGTGGACCAAGAGATACGCAACATAATTCACATAATTTGTATGCAGTGTGAAGGAGCAGAAG PALTISKVLLSICS GCATCTTCTCACTGTGCTGCAAATCTTTATAGCCTTTACAATACGGACTTCTGTGTATATGTTATACTGATTCTACTCTGCTTTTAT LLTDCNPADPLVGS CCTTTGGAGCCTGGGAGACTCCCCAAAAAGGTAAATGCTATCAAGAGTAGAACTTTGTAGCTGTAGATTAGTTATGTTTAAAACGCC IATQYLTNRAEHDR TACTTGCAAGTCTTGCTTCTTTGGGATATCAAAATGTATTTTGTGATGTACTAAGGATACTGGTCCTGAAGTCTACCAAATATTATA IARQWTKRYAT GTGCATTTTAGCCTAATTCATTATCTGTATGAAGTTATAAAAGTAGCTGTAGATGGCTAGGAATTATGTCATTTGTATTAAACCCAG ATCTATTTCTGAGTATGTGGTTCATGCTGTTGTGAAAAATGTTTTACCTTTTACCTTTGTCAGTTTGTAATGAGAGGATTTCCTTTT ACCCTTTGTAGCTCAGAGAGCACCTGATGTATCATCTCAAACACAATAAACATGCTCCTGAAGGAAAAAAAAAAAAAAAA SEQIDNO.:14 SEQIDNO.:61 CCACGCGTCCGGGACCCGGCCCGCGCCTTCTGCCCCTGCTGCCGGCCGCGCCATGCGGTGAGCGCCCCAGGCCGCCAGAGCCCACCC MARGSALLLASLLL GACCCGGCCCGACGCCCGGACCTGCCGCCCAGACCCGCCACCGCACCCGGACCCCGACGCTCCGAACCCGGGCGCAGCCGCAGCTCA AAALSASAGLWSPA AGATGGCCCGAGGCAGCGCCCTCCTTCTCGCCTCCCTCCTCCTCGCCGCGGCCCTTTCTGCCTCTGCGGGGCTCTGGTCGCCGGCCA KEKRGWTLNSAGYL AGGAAAAACGAGGCTGGACCCTGAACAGCGCGGGCTACCTGCTGGGCCCACATGCCGTTGGCAACCACAGGTCATTCAGCGACAAGA LGPHAVGNHRSFSD ATGGCCTCACCAGCAAGCGGGAGCTGCGGCCCGAAGATGACATGAAACCAGGAAGCTTTGACAGGTCCATACCTGAAAACAATATCA KNGLTSKRELRPSD TGCGCACAATCATTGAGTTTCTGTCTTTCTTGCATCTCAAAGAGGCCGGTGCCCTCGACCGCCTCCTGGATCTCCCCGCCGCAGCCT DMKPGSFDRSIPEN CCTCAGAAGACATCGAGCGGTCCTGAGAGCCTCCTGGGCATGTTTGTCTGTGTGCTGTAACCTGAAGTCAAACCTTAAGATAATGGA NIMRTIIEFLSFLH TAATCTTCGGCCAATTTATGCAGAGTCAGCCATTCCTGTTCTCTTTGCCTTGATGTTGTGTTGTTATCATTTAAGATTTTTTTTTTT LKEAGALDRLLDLP TGGTAATTATTTTGAGTGGCAAAATAAAGAATAGCAATTAAAAAAAAAAAAACAAAAAAAAAAAAAAAA AAASSSEDIERS SEQIDNO.:15 SEQIDNO.:62 CGGTGGTTGGGTGGTAAGATGGCGGCTGTGAGTCTGCGGCTCGGCGACTTGGTGTGGGGGAAACTCGGCCGATATCCTCCTTGGCCA MAAVSLRLGDLVWG GGAAAGATTGTTAATCCACCAAAGGACTTGAAGAAACCTCGCGGAAAGAAATGCTTCTTTGTGAAATTTTTTGGAACAGAAGATCAT KLGRYPPWPGKIVN GCCTGGATCAAAGTGGAACAGCTGAAGCCATATCATGCTCATAAAGAGGAAATGATAAAAATTAACAAGGGTAAACGATTCCAGCAA PPKDLKKPRGKKCF GCGGTAGATGCTGTCGAAGAGTTCCTCAGGAGAGCCAAAGGGAAAGACCAGACGTCATCCCACAATTCTTCTGATGACAAGAATCGA FVKFFGTEDHAWIK CGTAATTCCAGTGAGGAGAGAAGTAGGCCAAACTCAGGTGATGAGAAGCGCAAACTTAGCCTGTCTGAAGGGAAGGTGAAGAAGAAC VEQLKPYHAHKEEM ATGGGAGAAGGAAAGAAGAGGGTGTCTTCAGGCTCTTCAGAGAGAGGCTCCAAATCCCCTCTGAAAAGAGCCCAAGAGCAAAGTCCC IKINKGKRFQQAVD CGGAAGCGGGGTCGGCCCCCAAAGGATGAGAAGGATCTCACCATCCCGGAGTCTAGTACCGTGAAGGGGATGATGGCCGGACCGATG AVEEFLRRAKGKDQ GCCGCGTTTAAATGGCAGCCAACCGCAAGCGAGCCTGTTAAAGATGCAGATCCTCATTTCCATCATTTCCTGCTAAGCCAAACAGAG TSSHNSSDDKNRRN AAGCCAGCTGTCTGTTACCAGGCAATCACGAAGAAGTTGAAAATATGTGAAGAGGAAACTGGCTCCACCTCCATCCAGGCAGCTGAC SSEERSRPNSGDEK AGCACAGCCGTGAATGGCAGCATCACACCCACAGACAAAAAGATAGGATTTTTGGGCCTTGGTCTCATGGGAAGTGGAATCGTCTCC RKLSLSEGKVKKNM AACTTGCTAAAAATGGGTCACACAGTGACTGTCTGGAACCGCACTGCAGAGAAATGTGATTTGTTCATCCAGGAGGGGGCCCGTCTG GEGKKRVSSGSSER GGAAGAACCCCCGCTGAAGTCGTCTCAACCTGCGACATCACTTTCGCCTGCGTGTCGGATCCCAAGGCGGCCAAGGACCTGGTGCTG GSKSPLKRAQEQSP GGCCCCAGTGGTGTGCTGCAAGGGATCCGCCCTGGGAAGTGCTACGTGGACATGTCAACAGTGGACGCTGACACCGTCACTGAGCTG RKRGRPPKDEKDLT GCCCAGGTGATTGTGTCCAGGGGGGGGCGCTTTCTGGAAGCCCCCGTCTCAGGGAATCAGCAGCTGTCTAATGACGGGATGTTGGTG IPESSTVKGMMAGP ATCTTAGCGGCTGGAGACAGGGGCTTATATGAGGACTGCAGCAGCTGCTTCCAGGCGATGGGGAAGACCTCCTTCTTCCTAGGTGAA MAAFKWQPTASEPV GTGGGCAATGCAGCCAAGATGATGCTGATCGTGAACATGGTCCAAGGGAGCTTCATGGCCACTATTGCCGAGGGGCTGACCCTGGCC KDADPHFHHFLLSQ CAGGTGACAGGCCAGTCCCAGCAGACACTCTTGGACATCCTCAATCAGGGACAGTTGGCCAGCATCTTCCTGGACCAGAAGTGCCAA TEKPAVCYQAITKK AATATCCTGCAAGGAAACTTTAAGCCTGATTTCTACCTGAAATACATTCAGAAGGATCTCCGCTTAGCCATTGCGCTGGGTGATGCG LKICEEETGSTSIQ GTCAACCATCCGACTCCCATGGCAGCTGCAGCAAATGAGGTGTACAAAAGAGCCAAGGCGCTGGACCAGTCCGACAACGATATGTCC AADSTAVNGSITPT GCCGTGTACCGAGCCTACATACACTAAGCTGTCGACACCCCGCCCTCACCCCTCCAATCCCCCCTCTGACCCCCTCTTCCTCACATG DKKIGFLGLGLMGS GGGTCGGGGGCCTGGGAGTTCATTCTGGACCAGCCCACCTATCTCCATTTCCTTTTATACAGACTTTGAGACTTGCCATCAGCACAG GIVSNLLKMGHTVT CACACAGCAGCACCCTTCCCCTGAGGCCGGTGGGGAGGGGACAAGTGTCAGCAGGATTGGCGTGTGGGAAAGCTCTTGAGCTGGGCA VWNRTAEKCDLFIQ CTGGCCCCCCGGACGAGGTGGCTGTGTGTTCACACACACACACACACACACACACACACACACACACAGGCTCTCGCCCCAGGATAG EGARLGRTPAEVVS AAGCTGCCCAGAAACTGCTGCCTGGCTTTTTTTCTTCCGAGCTTGTCTTATCTCAAACCCCTTCCAGTCAAGGAACTAGAATCAGCA TCDITFACVSDPKA ACGAGAGTTGGAAGCCTTCCCACAGCTTCCCCCAGAGCGAAGAGGCTGTAGTCATGTCCCCATCCCCCACTGGATTCCCTACAAGGA AKDLVLGPSGVLQG GAGGCCTTGGGCCCAGATGAGCCAGTACAGACTCCAGACAGAGGGGCCCTTGGGGCCCTCCAACCTCAGGTGATGAGCTGAGAAAGA IRPGKCYVDMSTVD TGTTCACGTCTAAGCGTCCAGTGTGCACCCAGCGCTCCATAGACGCCTTTGTGAACTGAAAAGAGACTGGCAGAGTCCCGAGAAGAT ADTVTELAQVIVSR GGGGCCCTGGCTTTCCAGGGAGTGCAGCAAGCAGCCGGCCTGCAGGTGAGCATGGAGGCCCGGCCCTCACCGCCTCGAAGCCATGCC GGRFLEAPVSGNQQ CCAGATGCCACTGCCACAGCGGGCGCTCGCTCCTCCCTAGGCTGTTTTAGTATTTGGATTTGCATTCCATCCCTTGGGAGGGAGTCC LSNDGMLVILAAGD TCAGGGCCACTAGTGATGAGCCAAGAGGAGTGGGGGTTGGGGGCGCTCCTTTCTGTTTCCGTTAGGCCACAGACTCTTCACCTGGCT RGLYEDCSSCFQAM CTGAAGAGCCACTCTTACCTCGGTCCCCTCCCAGTGGTCCCACCTTCTCCACCCTGCCCTGCCAAGTCCCCTGCATGCCCACCGCTC GKTSFFLGEVGNAA TCCATCCTCCCTCCTCTCCCTCTTCCTCCCGTGGAGQCAGTATTTCTTTCTGTCTGTCCCTTTGGCCCAGACCCAGCCTGACCAACG KMMLIVNMVQGSFM ATGAGCATTTCTTAGGCTCAGCTCTTGATACGGAAACGAGTGTCTTCACTCCAGCCAGCATCATGGTCTTCGGTGCTTCCCGGGCCC ATIAEGLTLAQVTG GGGGTCTGTCGGGAGGGAAGAGAACTGGGCCTGACCTACCTGAACTGACTGGCCCTCCGAGGTGGGTCTGGGACATCCTAGAGGCCC QSQQTLLDILNQGQ TACATTTGTCCTTGGATAGGGGACCGGGGGGGGCTTGGAATGTTGCAAAAAAAAAGTTACCCAAGGGATGTCAGTTTTTTATCCCTC LASIFLDQKCQNIL TGCATGGGTTGGATTTTCCAAAATCATAATTTGCAGAAGGAAGGCCAGCATTTACGATGCAATATGTAATTATATATAGGGTGGCCA QGNFKPDFYLKYIQ CACTAGGGCGGGGTCCTTCCCCCCTACACAGCTTTGGCCCCTTTCAGAGATTAGAAACTGGGTTAGAGGATTGCAGAAGACGAGTGG KDLRLAIALGDAVN GGGGAGGGCAGGGAAGATGCCTGTCGGGTTTTTAGCACAGTTCATTTCACTGGGATTTTGAAGCATTTCTGTCTGAACACAAGCCTG HPTPMAAAANEVYK TTCTAGTCCTGGCGGAACACACTGGGGGTGGGGGCGGGGGAAGATGCGGTAATGAAACCGGTTAGTCAATTTTGTCTTAATATTGTT RAKALDQSDNDMSA GACAATTCTGTAAAGTTCCTTTTTATGAATATTTCTGTTTAAGCTATTTCACCTTTCTTTTGAAATCCTTCCCTTTTAAGGAGAAAA VYRAYIH TGTGACACTTGTGAAAAAGCTTGTAAGAAAGCCCCTCCCTTTTTTTCTTTAAACCTTTAAATGACAAATCTAGGTAATTAAGGTTGT GAATTTTTATTTTTGCTTTGTTTTTAATGAACATTTGTCTTTCAGAATAGGATTGTGTGATAATGTTTAAATGGCAAAAACAAAACA TGATTTTGTGCAATTAACAAAGCTACTGCAAGAAAAATAAAACACTTCTTGGTAACACAAAAAAAAAAAAAAAAAAAA SEQIDNO.:16 SEQIDNO.:63 AGTACCTTGGTCCAGCTCTTCCTGCACGGCCCAGGAGCTCAGAGCTCCACATCTGACCTTCTAGTCATGACCQAGGACCAGGGCAGC MTRTRAALLLFTAL ACTCCTCCTGTTCACAGCCTTAGCAACTTCTCTAGGTTTCAACTTGGACACAGAGGAGCTGACAGCCTTCCGTGTGGACAGCGCTGG ATSLGFNLDTEELT GTTTGGAGACAGCGTGGTCCAGTATGCCAACTCCTGGGTGGTGGTTGGAGCCCCCCAAAAGATAACAGCTGCCAACCAAACGGGTGG AFRVDSAGFGDSVV CCTCTACCAGTGTGGCTACAGCACTGGTGCCTGTGAGCCCATCGGCCTGCAGGTGCCCCCGGAGGCCGTGAACATGTCCCTGGGCCT QYANSWVVVGAPQK GTCCCTGGCGTCTACCACCAGCCCTTCCCAGCTGCTGGCCTGCGGCCCCACCGTGCACCACGAGTGCGGGAGGAACATGTACCTCAC ITAANQTGGLYQCG CGGACTCTGCTTCCTCCTGGGCCCCACCCAGCTCACCCAGAGGCTCCCGGTGTCCAGGCAGGAGTGCCCAAGACAGGAGCAGGACAT YSTGACSPIGLQVP TGTGTTCCTGATCGATGGCTCAGGCAGCATCTCCTCCCGCAACTTTGCCACGATGATGAACTTCGTGAGAGCTGTGATAAGCCAGTT PEAVNMSLGLSLAS CCAGAGACCCAGCACCCAGTTTTCCCTGATGCAGTTCTCCAACAAATTCCAAACACACTTCACTTTCGAGGAATTCAGGCGCAGCTC TTSPSQLLACGPTV AAACCCCCTCAGCCTGTTGGCTTCTGTTCACCAGCTGCAAGGGTTTACATACACGGCCACCGCCATCCAAAATGTCGTGCACCGATT HHECGRNMYLTGLC GTTCCATGCCTCATATGGGGCCCGTAGGGATGCCGCCAAAATTCTCATTGTCATCACTGATGGGAAGAAAGAAGGCGACAGCCTGGA FLLGPTQLTQRLPV TTATAAGGATGTCATCCCCATGGCTGATGCAGCAGGCATCATCCGCTATGCAATTGGGGTTGGATTAGCTTTTCAAAACAGAAATTC SRQECPRQEQDIVG TTGGAAAGAATTAAATGACATTGCATCGAAGCCCTCCCAGGAACACATATTTAAAGTGGAGGACTTTGATGCTCTGAAAGATATTCA LIDGSGSISSRNFA AAACCAACTGAAGGAGAAGATCTTTGCCATTGAGGGTACGGAGACCACAAGCAGTAGCTCCTTCGAATTGGAGATGGCACAGGAGGG TMMNFVRAVISQFQ CTTCAGCGCTGTGTTCACACCTGATGGCCCCGTTCTGGGGGCTGTGGGGAGCTTCACCTGGTCTGGAGGTGCCTTCCTGTACCCCCC RPSTQFSLMQFSNK AAATATGAGCCCTACCTTCATCAACATGTCTCAGGAGAATGTGGACATGAGGGACTCTTACCTGGGTTACTCCACCGAGCTGGCCCT FQTHFTFEEFRRSS CTGGAAAGGGGTGCAGAGCCTGGTCCTGGGGGCCCCCCGCTACCAGCACACCGGGAAGGCTGTCATCTTCACCCAGGTGTCCAGGCA NPLSLLASVHQLQG ATGGAGGATGAAGGCCGAAGTCACGGGGACTCAGATCGGCTCCTACTTCGGGGCCTCCCTCTGCTCCGTGGACGTAGACAGCGACGG FTYTATAIQNVVHR CAGCACCGACCTGGTCCTCATCGGGGCCCCCCATTACTACGAGCAGACCCGAGGGGGCCAGGTGTCTGTGTGTCCCTTGCCCAGGGG LFHASYGARRDAAK GTGGAGAAGGTGGTGGTGTGATGCTGTTCTCTACGGGGAGCAGGGCCACCCCTGGGGTCGCTTTGGGGCGGCTCTGACAGTGCTGGG ILIVITDGKKEGPS GGATGTGAATGGGGACAAGCTGACAGACGTGGTCATCGGGGCCCCAGGAGAGGAGGAGAACCGGGGTGCTGTCTACCTGTTTCACGG LDYKDVIPMADAAG AGTCTTGGGACCCAGCATCAGCCCCTCCCACAGCCAGCGGATCGCGGGCTCCCAGCTCTCCTCCAGGCTGCAGTATTTTGGGCAGGC IIRYAIGVGLAFQN ACTGAGCGGGGGTCAAGACCTCACCCAGGATGGACTGGTGGACCTGGCTGTGGGGGCCCGGGGCCAGGTGCTCCTGCTCAGGACCAG RNSWKELNDIASKP ACCTGTGCTCTGGGTGGGGGTGAGCATGCAGTTCATACCTGCCGAGATCCCCAGGTCTGCGTTTGAGTGTCGGGAGCAGGTGGTCTC SQEHIFKVEDFDAL TGAGCAGACCCTGGTACAGTCCAACATCTGCCTTTACATTGACAAACGTTCTAAGAACCTGCTTGGGAGCCGTGACCTCCAAAGCTC KDIQNQLKEKIFAI TGTGACCTTGGACCTGGCCCTCGACCCTGGCCGCCTGAGTCCCCGTGCCACCTTCCAGGAAACAAAGAACCGGAGTCTGAGCCGAGT EGTETTSSSSFELE CCGAGTCCTCGGGCTGAAGGCACACTGTGAAAACTTCAACCTGCTGCTCCCGAGCTGCGTGGAGGACTCTGTGACCCCCATTACCTT MAQEGFSAVFTPDG GCGTCTGAACTTCACGCTGGTGGGCAAGCCCCTCCTTGCCTTCAGAAACCTGCGGCCTATGCTGGCCGCCGATGCTCAGAGATACTT PVLGAVGSFTWSGG CACGGCCTCCCTACCCTTTGAGAAGAACTGTGGAGCCGACCATATCTGCCAGGACAATCTCGGCATCTCCTTCAGCTTCCCAGGCTT AFLYPPNMSPTFIN GAAGTCCCTGCTGGTGGGGAGTAACCTGGAGCTGAACGCAGAAGTGATGGTGTGGAATGACGGGGAAGACTCCTACGGAACCACCAT MSQENVDMRDSYLG CACCTTCTCCCACCCCGCAGGACTGTCCTACCGCTACGTGGCAGAGGGCCAGAAACAAGGGCAGCTGCGTTCCCTGCACCTGACATG YSTELALWKGVQSL TGACAGCGCCCCAGTTGGGAGCCAGGGCACCTGGAGCACCAGCTGCAGAATCAACCACCTCATCTTCCGTGGCGGCGCCCAGATCAC VLGAPRYQHTGKAV CTTCTTGGCTACCTTTGACGTCTCCCCCAAGGCTGTCCTGGGAGACCGGCTGCTTCTGACAGCCAATGTGAGCAGTGAGAACAACAC IFTQVSRQWRMKAE TCCCAGGACCAGCAAGACCACCTTCCAGCTGGAGCTCCCGGTGAAGTATGCTGTCTACACTGTGGTTAGCAGCCACGAACAATTCAC VTGTQIGSYFGASL CAAATACCTCAACTTCTCAGAGTCTGAGGAGAAGGAAAGCCATGTGGCCATGCACAGATACCAGGTCAATAACCTGGGACAGAGGGA CSVDVDSDGSTDLV CCTGCCTGTCAGCATCAACTTCTGGGTGCCTGTGGAGCTGAACCAGGAGGCTGTGTGGATGGATGTGGAGGTCTCCCACCCCCAGAA LIGAPHYYEQTRGG CCCATCCCTTCGGTGCTCCTCAGAGAAAATCGCACCCCCAGCATCTGACTTCCTGGCGCACATTCAGAAGAATCCCGTGCTGGACTG QVSVCPLPRGWRRW CTCCATTGCTGGCTGCCTGCGGTTCCGCTGTGACGTCCCCTCCTTCAGCGTCCAGGAGGAGCTGGATTTCACCCTGAAGGGCAACCT WCDAVLYGEQGHPW CAGCTTTGGCTGGGTCCGCCAGATATTGCAGAAGAAGGTGTCGGTCGTGAGTGTGGCTGAAATTACGTTCGACACATCCGTGTACTC GRGGAALTVLGDVN CCAGCTTCCAGGACAGGAGGCATTTATGAGAGCTCAGACGACAACGGTGCTGGAGAAGTACAAGGTCCACAACCCCACCCCCCTCAT GDKLTDVVIGAPGE CGTAGGCAGCTCCATTGGGGGTCTGTTGCTGCTGGCACTCATCACAGCGGTACTGTACAAAGTTGGCTTCTTCAAGCGTCAGTACAA EENRGAVYLFHGVL GGAAATGATGGAGGAGGCAAATGGACAAATTGCCCCAGAAAACGGGACACAGACCCCCAGCCCGCCCAGTGAGAAATGATCCCCTCT GPSISPSHSQRIAG TTGCCTTGGACTTCTTCTCCCCCGCGAGTTTTCCCCACTTACTTACCCTCACCTGTCAGGCCTGACGGGGAGGAACCACTGCACCAC SQLSSRLQYFGQAL CGAGAGAGGCTGGGATGGGCCTGCTTCCTGTCTTTGGGAGAAAACGTCTTGCTTGGGAAGGGGCCTTTGTCTTGTCAAGGTTCCAAC SGGQDLTQDGLVDL TGGAAACCCTTAGGACAGGGTCCCTGCTGTGTTCCCCAAAGGACTTGACTTGCAATTTCTACCTAGAAATACATGGACAATACCCCC AVGARGQVLLLRTR AGGCCTCAGTCTCCCTTCTCCCATGAGGCACGAATGATCTTTCTTTCCTTTCTTTTTTTTTTTTTTTCTTTTCTTTTTTTTTTTTTT PVLWVGVSMQFIPA GAGACGGAGTCTCGCTCTGTCACCCAGGCTGGAGTGCAATGGCGTGATCTCGGCTCACTGCAACCTCCGCCTCCCGGGTTCAAGTAA EIPRSAFECREQVV TTCTGCTGTCTCAGCCTCCTGAGTAGCTGGGACTACAGGCACACGCCACCTCGCCCGGCCCGATCTTTCTAAAATACAGTTCTGAAT SEQTLVQSNICLYI ATGCTGCTCATCCCCACCTGTCTTCAACAGCTCCCCATTACCCTCAGGACAATGTCTGAACTCTCCAGCTTCGCGTGAGAAGTCCCC DKRSKNLLGSRDLQ TTCCATCCCAGAGGGTGGGCTTCAGGGCGCACAGCATGAGAGGCTCTGTGCCCCCATCACCCTCGTTTCCAGTGAATTAGTGTCATG SSVTLDLALDPGRL TCAGCATCAGCTCAGGGCTTCATCGTGGGGCTCTCAGTTCCGATTTCCCAGGCTGAATTGGGAGTGAGATGCCTGCATGCTGGGTTC SPRATFQETKNRSL TGCACAGCTGGCCTCCCGCGTTGGGCAACATTGCTGGCTGGAAGGGAGGAGCGCCCTCTAGGGAGGGACATGGCCCCGGTGCGGCTG SRVRVLGLKAHCEN CAGCTCACCCAGCCCCAGGGGCAGAAGAGACCCAACCACTTCTATTTTTTGAGGCTATGAATATAGTACCTGAAAAAATGCCAAGAC FNLLLPSCVEDSVT ATGATTATTTTTTTAAAAAGCGTACTTTAAATGTTTGTGTTAATAAATTAAAACATGCACAAAAAGATGCATCTACCGCTCTTGGGA PITLRLNFTLVGKP AATATGTCAAAGGTCTAAAAATAAAAAAGCCTTCTGTGAAAAAAAAAAAAAAAAA LLAFRNLRPMLAAD AQRYFTASLPFEKN CGADHICQDNLGIS FSFPGLKSLLVGSN LELNAEVMVWNDGE DSYGTTITFSHPAG LSYRYVAEGQKQGQ LRSLHLTCDSAPVG SQGTWSTSCRINHL IFRGGAQITFLATF DVSPKAVLGDRLLL TANVSSENNTPRTS KTTFQLELPVKYAV YTVVSSHEQFTKYL NFSESEEKESHVAM HRYQVNNLGQRDLP VSINFWVPVELNQE AVWMDVEVSHPQNP SLRCSSEKIAPPAS DFLAHIQKNPVLDC SIAGCLRFRCDVPS FSVQEELDFTLKGN LSFGWVRQILQKKV SVVSVAEITFDTSV YSQLPGQEAFMRAQ TTTVLEKYKVHNPT PLIVGSSIGGLLLL ALITAVLYKVGFFK RQYKEMMEEANGQI APENGTQTPSPPSE K SEQIDNO.:17 SEQIDNO.:64 AATGGAGCCGCTGTCAGCAGAACCTTCTGCCGCCGCCGCCGCCGCCGCCGTCCCTCCTCTTTTTTTTCCCGGCAGATCTTTGTTGTG MVKFPALTHYWPLI TGGGAGGGCAGCAGGGATGGACTTGAGCTTGCGGATCCCCTGCTAGAGCAGCCGCGCTCGGAGAAGGCGCCGCAGCCGCGAGGAGGA RFLVPLGITNIAID GCCGCCGCCGCCGCGCCCGAGGCCCCGCCGCCCGCGGCCTCTGTCGGCCCGCGCCCCGCTCGCCCCGTCGCCCCGTCGCCCCTCGCC FGEQALNRGIAAVK TCCCCGCAGAGTCCCCTCGCGGCAGCAGATGTGTGTGGGGTCAGCCCACGGCGGGGACTATGGTGAAATTCCCGGCGCTCACGCACT EDAVEMLASYGLAY ACTGGCCCCTGATCCGGTTCTTGGTGCCCCTGGGCATCACCAACATAGCCATCGACTTCGGGGAGCAGGCCTTGAACCGGGGCATTG SLMKFFTGPMSDFK CTGCTGTCAAGGAGGATGCAGTCGAGATGCTGGCCAGCTACGGGCTGGCGTACTCCCTCATGAAGTTCTTCACGGGTCCCATGAGTG NVGLVFVNSKRDRT ACTTCAAAAATGTGGGCCTGGTGTTTGTGAACAGCAAGAGAGACAGGACCAAAGCCGTCCTGTGTATGGTGGTGGCAGGGGCCATCG KAVLCMVVAGAIAA CTGCCGTCTTTCACACACTGATAGCTTATAGTGATTTAGGATACTACATTATCAATAAACTGCACCATGTGGACGAGTCGGTGGGGA VFHTLIAYSDLGYY GCAAGACGAGAAGGGCCTTCCTGTACCTCGCCGCCTTTCCTTTCATGGACGCAATGGCATGGACCCATGCTGGCATTCTCTTAAAAC IINKLHHVDKSVGS ACAAATACAGTTTCCTGGTGGGATGTGCCTCAATCTCAGATGTCATAGCTCAGGTTGTTTTTGTAGCCATTTTGCTTCACAGTCACC KTRRAFLYIAAFPF TGGAATGCCGGGAGCCCCTGCTCATCCCGATCCTCTCCTTGTACATGGGCGCACTTGTGCGCTGCACCACCCTGTGCCTGGGCTACT MDAMAWTHAGILLK ACAAGAACATTCACGACATCATCCCTGACAGAAGTGGCCCGGAGCTGGGGGGAGATGCAACAATAAGAAAGATGCTGAGCTTCTGGT HKYSFLVGCASISD GGCCTTTGGCTCTAATTCTGGCCACACAGAGAATCAGTCGGCCTATTGTCAACCTCTTTGTTTCCCGGGACCTTGGTGGCAGTTCTG VIAQVVFVAILLHS CAGCCACAGAGGCAGTGGCGATTTTGACAGCCACATACCCTGTGGGTCACATGCCATACGGCTGGTTGACGGAAATCCGTGCTGTGT HLECREPLLIPILS ATCCTGCTTTCGACAAGAATAACCCCAGCAACAAACTGGTGAGCACGAGCAACACAGTCACGGCAGCCCACATCAAGAAGTTCACCT LYMGALVRCTTLCL TCGTCTGCATGGCTCTGTCACTCACGCTCTGTTTCGTGATGTTTTGGACACCCAACGTGTCTGAGAAAATCTTGATAGACATCATCG GYYKNIHDIIPDRS GAGTGGACTTTGCCTTTGCAGAACTCTGTGTTGTTCCTTTGCGGATCTTCTCCTTCTTCCCAGTTCCAGTCACAGTGAGGGCGCATC GPELGGDATIRKML TCACCGGGTGGCTGATGACACTGAAGAAAACCTTCGTCCTTGCCCCCAGCTCTGTGCTGCGGATCATCGTCCTCATCGCCAGCCTCG SFWWPLALILATQR TGGTCCTACCCTACCTGGGGGTGCACGGTGCGACCCTGGGCGTGGGCTCCCTCCTGGCGGGCTTTGTGGGAGAATCCACCATGGTCG ISRPIVNLFVSRDL CCATCGCTGCGTGCTATGTCTACCGGAAGCAGAAAAAGAAGATGGAGAATGAGTCGGCCACGGAGGGGGAAGACTCTGCCATGACAG GGSSAATEAVAILT ACATGCCTCCGACAGAGGAGGTGACAGACATCGTGGAAATGAGAGAGGAGAATGAATAAGGCACGGGACGCCATGGGCACTGCAGGG ATYPVGHMPYGWLT ACAGTCAGTCAGGATGACACTTCGGCATCATCTCTTCCCTCTCCCATCGTATTTTGTTCCCTTTTTTTTGTTTTGTTTTGGTAATGA EIRAVYPAFDKNNP AAGAGGCCTTGATTTAAAGGTTTCGTGTCAATTCTCTAGCATACTGGGTATGCTCACACTGACGGGGGGACCTAGTGAATGGTCTTT SNKLVSTSNTVTAA ACTGTTGCTATGTAAAAACAAACGAAACAACTGACTTCATACCCCTGCCTCACGAAAACCCAAAAGACACAGCTGCCTCACGGTTGA HIKKFTFVCMALSL CGTTGTGTCCTCCTCCCCTGGACAATCTCCTCTTGGAACCAAAGGACTGCAGCTGTGCCATCGCGCCTCGGTCACCCTGCACAGCAG TLCFVMFWTPNVSE GCCACAGACTCTCCTGTCCCCCTTCATCGCTCTTAAGAATCAACAGGTTAAAACTCGGCTTCCTTTGATTTGCTTCCCAGTCACATG KILIDIIGVDFAFA GCCGTACAAAGAGATGGAGCCCCGGTGGCCTCTTAAATTTCCCTTCCGCCACGGAGTTCGAAACCATCTACTCCACACATGCAGGAG ELCVVPLRIFSFFP GCGGGTGGCACGCTGCAGCCCGGAGTCCCCGTTCACACTGAGGAACGGAGACCTGTGACCACAGCAGGCTGACAGATGGACAGAATC VPVTVRAHLTGWLM TCCCGTAGAAAGGTTTGGTTTGAAATGCCCCGGGGGCAGCAAACTGACATGGTTGAATGATAGCATTTCACTCTGCGTTCTCCTAGA TLKKTFVLAPSSVL TCTGAGCAAGCTGTCAGTTCTCACCCCCACCGTGTATATACATGAGCTAACTTTTTTAAATTGTCACAAAAGCGCATCTCCAGATTC RIIVLIASLVVLPY CAGACCCTGCCGCATGACTTTTCCTGAAGGCTTGCTTTTCCCTCGCCTTTCCTGAAGGTCGCATTAGAGCGAGTCACATGGAGCATC LGVHGATLGVGSLL CTAACTTTGCATTTTAGTTTTTACAGTGAACTGAAGCTTTAAGTCTCATCCAGCATTCTAATGCCAGGTTGCTGTAGGGTAACTTTT AGFVGESTMVAIAA GAAGTAGATATATTACCTGGTTCTGCTATCCTTAGTCATAACTCTGCGGTACAGGTAATTGAGAATGTACTACGGTACTTCCCTCCC CYVYRKQKKKMENE ACACCATACGATAAAGCAAGACATTTTATAACGATACCAGAGTCACTATGTGGTCCTCCCTGAAATAACGCATTCGAAATCCATGCA SATEGEDSAMTDMP GTGCAGTATATTTTTCTAAGTTTTGGAAAGCAGGTTTTTTCCTTTAAAAAAATTATAGACACGGTTCACTAAATTGATTTAGTCAGA PTEEVTDIVEMREE ATTCCTAGACTGAAAGAACCTAAACAAAAAAATATTTTAAAGATATAAATATATGCTGTATATGTTATGTAATTTATTTTAGGCTAT NE AATACATTTCCTATTTTCGCATTTTCAATAAAATGTCTCTAATACAATACGGTGATTGCTTGTGTGCTCAACATACCTGCAGTTGAA ACGTATTGTATCAATGAACATTGTACCTTATTGGCAGCAGTTTTATAAAGTCCGTCATTTGCATTTGAATGTAAGGCTCAGTAAATG ACAGAACTATTTTTCATTATGGGTAACTGGGGAATAAATGGGTCACTGGAGTAGGAATAGAAGTGCAAGCTGGAAAGGCAAAAATGA GAAAGAAAAAGGCAGGCCCTTTGTGTCTACCGTTTTCAGTGCTGTGTGATCATATTGTTCCTCACAGCAAAAAAGAATGCAAGGGCA TAATGTTAGCTGTGAACATGCCAGGGTTGCATTCACATTCCTGGGTACCCAGTGCTGATGGGGTGTGCCCACGTGGGGACATGTCCT TGGCGTGCTTCCTCAGAGTGGCTTTTCCTCCATTAATACATATATGAGTACTGAAAAATTAAGTTGCATAGCTGCTTTGCAGTGGTT TCAGAGGCAGATCTGAGAAGATTAAAAAAAAATCTCAATGTATCAGCTTTTTTTAAAGGACATTACTAGAAAATTAAACAGTATTTT TTAACATGTGTGACTTTCATGCTTCTGGGGTTGGAGCTTAAAGATCCAAACTGAGAAAGCAGGCCGGGCATGGTGGCTCATGCCTGT AATCCCAACACTTTGGGAGGCCAAGGAGGGTGGATCACTTAAGGTCAGGAGTTTGAGACCAGCCTGGCCAACATGGCAAAACCCTGT CTCTACTAAAAACATAAAAATTAGCTGGGGGTGGTAGCACATACCTGTAATCCCAGCTACTCAGGAGGCTGAGGCAGGAGAATTTGC TTGATCCTGGGAGGCAGAGGTTGTAGTGAGCCGAGATCGCGCCATCGCACTCCAGCCTGGGTGACAAGAGCAAAACTCCATCTC SEQIDNO.:18 SEQIDNO.:65 GACAGCCTCTGGGTCCTCGGTCGGTACAGTCTCTGCACCTCGCGCCCCAGCAGGTAAACTAACATTATGGATTTTTCCAAGCTACCC MDFSKLPKILDEDK AAAATACTCGATGAAGATAAAGAAAGCACATTTGGTTATGTGCATGGGGTCTCAGGACCTGTGGTTACAGCCTGTGACATGGCGGGT ESTFGYVHGVSGPV GCAGCCATGTATGAGCTGGTGAGAGTGGGCCACAGCGAATTGGTTGGAGAGATTATTCGATTGGAGGGTGACATGGCTACTATTCAG VTACDMAGAAMYEL GTGTATGAAGAAACTTCTGGTGTGTCTGTTGGAGATCCTGTACTTCGCACTGGTAAACCCCTCTCTGTAGAGCTTGGTCCTGGCATT VRVGHSELVGEIIR ATGGGAGCCATTTTTGATGGTATTCAAAGACCTTTGTCGGATATCAGCGTCAGACCCAAAGCATCTACATCCCCAGAGGGAGTAAAC LEGDMATIQVYEET GTGTCTGCTCTTAGCAGAGATATCAAATGGGACTTTACACCTTGCAAAAACCTACGGGTTGGTAGTCATATCACTGGCGGAGACATT SGVSVGDPVLRTGK TATGGAATTGTCAGTGAGAACTCGCTTATCAAACACAAAATCATGTTACCCCCACGAAACAGAGGAACTGTAACTTACATTGCTCCA PLSVELGPGIMGAI CCTGGGAATTATGATACCTCTGATGTTGTCTTGGAGCTTGAATTTGAAGGTGTAAAGGAGAAGTTCACCATGGTGCAAGTATGGCCT FDGIQRPLSDISSQ GTACGTCAAGTTCGACCTGTCACTGAGAAGCTGCCAGCCAATCATCCTCTGTTGACTGGCCAGAGAGTCCTTGATGCCCTTTTTCCG TQSIYIPRGVNVSA TGTGTCCAGGGAGGAACTACTGCTATCCCTGGAGCCTTTGGCTGTGGAAAGACAGTGATATCACAGTCTCTATCCAAGTATTCTAAC LSRDIKWDFTPCKN AGTGATGTAATCATCTATGTAGGATGTGGTGAAAGAGGAAATGAGATGTCTGAAGTCCTCCGGGACTTCCCAGAGCTCACAATGGAG LRVGSHITGGDIYG GTTGATGGTAAGGTAGAGTCAATTATGAAGAGGACAGCTTTGGTAGCCAATACCTCCAATATGCCTGTTGCTGCTAGAGAAGCCTCT IVSENSLIKHKIML ATTTATACTGGAATCACACTGTCAGAGTACTTCCGTGACATGGGCTATCATGTCAGTATGATGGCTGACTCTACCTCTAGATGGGCT PPRNRGTVTYIAPP GAGGCCCTTAGAGAAATCTCTGGTCGTTTAGCTGAAATGCCTGCAGATAGTGGATATCCAGCCTATCTTGGTGCCCGTCTGGCCTCG GNYDTSDVVLELEF TTTTATGAACGAGCAGGCAGGGTGAAATGTCTTGGAAATCCTGAAAGAGAAGGGAGTGTCAGCATTGTAGGAGCAGTTTCTCCACCT EGVKEKFTMVQVWP GGTGGTGATTTTTCTGATCCAGTTACATCTGCCACTCTTGGTATCGTTCAGGTGTTCTGGGGCTTAGATAAGAAACTAGCTCAACGT VRQVRPVTEKLPAN AAGCATTTCCCCTCTGTCAATTGGCTCATCAGCTACAGCAAGTATATGCGTGCCTTGGATGAATACTATGACAAACACTTCACAGAG HPLLTGQRVLDALF TTCGTTCCTCTGAGGACGAAAGCTAAGGAAATTCTGCAGGAAGAAGAAGACCTGGCAGAAATTGTACAGCTTGTGGGAAAGGCTTCT PCVQGGTTAIPGAF TTGGCAGAAACAGATAAAATCACTCTGGAGGTAGCAAAACTTATCAAAGATGATTTCCTACAACAAAATGGATATACTCCTTATGAC GCGKTVISQSLSKY AGGTTCTGCCCATTCTACAAGACAGTAGGGATGCTGTCCAACATGATTGCATTTTATGATATGGCTCGTAGAGCTGTTGAAACCACT SNSDVIIYVGCGER GCCCAGAGTGACAATAAAATCACATGGTCCATTATTCGTGAGCACATGGGAGACATCCTCTATAAACTTTCCTCCATGAAATTCAAG GNEMSEVLRDFPEL GATCCACTGAAAGATGGTGAGGCAAAGATCAAAAGCGACTATGCACAACTTCTTGAAGACATGCAGAATGCATTCCGTAGCCTTGAA TMEVDGKVESIMKR GATTAGAAGCCTTGAAGATTACAACTGTGATTTCCTTTTCCTCAGCAAGCTCCTATGTGTATATTTTCCTGAATTTCTCATCTCAAA TALVANTSNMPVAA CCCTTTGCTTCTTTATTGTGCAGCTTTGAGACTAGTGCCTATGTGTGTTATTTGTTTCCCTGTTTTTTTGGTAGGTCTTATATAAAA REASIYTGITLSEY CAAACATTCCTTTGTTCTAGTGTTGTGAAGGGCCTCCCTCTTCCTTTATCTGAAGTGGTGAATATAGTAAATATACATTCTGGTTAC FRDMGYHVSMMADS ACTACTGTAAACTTGTATGTAGGGTGATGACCCTCTTTGTCCTAGGTGTACCCTTTCCTCATCTCTATTAAATTGTAAACAGGACTA TSRWAEALREISGR CTGCATGTACTCTCTTTGCAGTGAATTTGGAATGGAAGGCCAGGTTTCTATAACTTTTGAACAGGTACTTTGTGAAATGACTCAATT LAEMPADSGYPAYL TCTATTGTGGTAAGCTCATTGGCAGCTTAGCATTTTGCAAAGGAATTGCTTTGCAGGAAATATTTAATTTTCAAAAACATAATGATT GARLASFYERAGRV AATGTTCCAATTATGCATCACTTCCCCCAGTATAAATCAGGAATGTTTGTGAGAAACCATTGGGAACTATACTCTTTTTATTTTTAT KCLGNPEREGSVSI TTTTTATTTTTTTTATTATTTTTTTTTTGGGGACGGAGTGTCCCTCTTGTTGCCCAGGCTGGAGTGCAATGGCGTGATCTTGGCTCA VGAVSPPGGDFSDP CTGCAGCCTTCGCCTCCCGGGTTCAAGTGATTCTCCTGCCTCAGCCTCCCGAGTAGCTGGGATTACAGGCATGCTCCACCATGCCCA VTSATLGIVQVFWG GCTAATTTTGTATTTTTAGTAGAAACGGGGTTTCACCATATTGGTCAGGCTGGTCTCGAACTCCAGACCTCAGGTGATCCGCCCACC LDKKLAQRKHFPSV TCGGCCTCCCAAACTGCTGGGATTACAGGCGTGAGCCACCGCGCCTGGCCAGGGACTATACTCTTTTTAAAATAGACATTTGTGGGG NWLISYSKYMRALD CTCACACAATATATGAAATAGTACCCTCTAAAAAAGAGAAAAAAAAAATCAGGCGGTCAAACTTAGAGCAACATTGTCTTATTAAAG EYYDKHFTEFVPLR CATAGTTTATTTCACTAGAAAAAATTTAATATCAAGGACTATTACATACTTCATTACTAGGAAGTTCTTTTTAAAATGACACTTAAA TKAKEILQEEEDLA ACAATCACTGAAAACTTGATCCACATCACACCCTGTTTATTTTCCTTAAACATCTTGGAAGCCTAAGCTTCTGAGAATCATGTGGCA EIVQLVGKASLAET AGTGTGATGGGCAGTAAAATACCAGAGAAGATGTTTAGTAGCAATTAAAGGCTGTTTGCACCTTTAAGGACCAGCTGGGCTGTAGTG DKITLEVAKLIKDD ATTCCTGGGGCCAGAGTGGCATTATGTTTTTACAAAATAATGACATATGTCACATGTTTGCATGTTTGTTTGCTTGTTGAATTTTTG FLQQNGYTPYDRFC AACAGCCAGTTGACCAATCATAGAAAGTATTACTTTCTTTCATATGGTTTTTGGTTCACTGGCTTAAGAGGTTTCTCAGAATATCTA PFYKTVGMLSNMIA TGGCCACAGCAGCATACCAGTTTCCATCCTAATAGGAATGAAATTAATTTTGTATCTACTGATAACAGAATCTGGGTCACATGAAAA FYDMARRAVETTAQ AAAATCATTTTATCCGTCTTTTAAGTATATGTTTAAAATAATAATTTATGTGTCTGCATATTGCAGAACAGCTCTGAGAGCAACAGT SDNKITWSIIREHM TTCCCATTAACTCTTTCTGACCAATAGTGCTGGCACCGTTGCTTCCTCTTTGGGAAGAGGAAAGGGTGTGTGAACATGGCTAACAAT GDILYKLSSMKFKD CTTCAAATACCCAAATTGTGATAGCATAAATAAAGTATTTATTTTATGCCTCAGTATATTATTATTTAATTTTTTAGGTAATGCCTA PLKDGEAKIKSDYA TCTCTTGGTCTATTAAGGAAAGAAGCAATCAGTAGAGAATTCAGGATAGTTTTGTTTAAATTCTTGCAGATTACATGTTTTTACAGT QLLEDMQNAFRSLE GGCCTGCTATTGAGGAAAGGTATTCTTCTATACAACTTGTTTTAACCTTTGAGAACATTGACAGAAATTATGCAATGGTTTGTTGAG D ATACGGACTTGATGGTGCTGTTTAATCAGTTTGCTTCCAAAGTGGCCTACTCAAGAGGCCCTAAGACTGGTAGAAATTAAAAGGATT TCAAAAACTTTCTATTCCTTTCTTAAACCTACCAGCAAACTAGGATTGTGATAGCAATGAATGGTATGATGAAGAAAGTTTGACCAA ATTTGTTTTTTTGTTGTTGTTGTTGTTTTGAATTTGAAATCATTCTTATTCCCTTTAAGAATGTTTATGTATGAGTGTGAAGATGCT AGCGAACCTATGCTCAGATATTCATCGTAAGTCTCCCTTCACCTGTTACAGAGTTTCAGATCGGTCACTGATAGTATGTATTTCTTT AGTAAGAATGTGTTAAAATTACAATGATCTTTTAAAAAGATGATGCAGTTCTGTATTTATTGTGCTGTGTCTGGTCCTAAGTGGAGC CAATTAAACAAGTTTCATATGTATTTTTCCAGTGTTGAATCTCACACACTGTACTTTGAAAATTTCCTTCCATCCTGAATAACGAAT AGAAGAGGCCATATATATTGCCTCCTTATCCTTGAGATTTCACTACCTTTATGTTAAAAGTTGTGTATAATTGTTAAAATCTGTGAA AGAATAAAAAGTGGATTTAAATTAAAAAAAAAAAAAAAAAAAA SEQIDNO.:19 SEQIDNO.:66 ACGCCTGGTCTCTGGGACGCCCCTCCGGACCCGTTTCGCCTCGCGGAGCCGGTAGGTCCAGGTGCAGCGGCCGCAGTGCTGCGTCCG MIRQERSTSYQELS TGCGCCGCGGGCTGGGGCGGTCTCAGGTGTGCCGAAGCTCTGGTCAGTGCCATGATCCGGCAGGAGCGCTCCACATCCTACCAGGAG EELVQVVESSELAD CTGAGTGAGGAGTTGGTCCAGGTGGTTGAGAGCTCAGAGCTGGCAGACGAGCAGGACAAGGAGACGGTCAGAGTCCAAGGTCCGGGT EQDKETVRVQGPGI ATCTTACCAGGCCTGGACAGCGAGTCCGCCTCCAGCAGCATCCGCTTCAGCAAGGCCTGCCTGAAGAACGTCTTCTCGGTCCTACTC LPGLDSESASSSIR ATCTTCATCTACCTGCTGCTCATGGCTGTGGCCGTCTTCCTGGTCTACCGGACCATCACAGACTTTCGTGAGAAACTCAAGCACCCT FSKACLKNVFSVLL GTCATGTCTGTGTCTTACAAGGAAGTGGATCGCTATGATGCCCCAGGTATTGCCTTGTACCCCGGTCAGGCCCAGTTGCTCAGCTGT IFIYLLLMAVAVFL AAGCACCATTACGAGGTCATTCCTCCTCTGACAAGCCCTGGCCAGCCGGGTGACATGAATTGCACCACCCAGAGGATCAACTACACG VYRTITDFREKLKH GACCCCTTCTCCAATCAGACTGTGAAATCTGCCCTGATTGTCCAGGGGCCCCGGGAAGTGAAAAAGCGGGAGCTGGTCTTCCTCCAG PVMSVSYKEVDRYD TTCCGCCTGAACAAGAGTAGTGAGGACTTCAGCGCCATTGATTACCTCCTCTTCTCTTCTTTCCAGGAGTTCCTGCAAAGCCCAAAC APGIALYPGQAQLL AGGGTAGGCTTCATGCAGGCCTGTGAGAGTGCCTGTTCCAGCTGGAAGTTCTCTGGGGGCTTCCGCACCTGGGTCAAGATGTCACTG SCKHHYEVIPPLTS GTAAAGACCAAGGAGGAGGATGGGCGGGAAGCAGTGGAGTTCCGGCAGGAGACAAGTGTGGTTAACTACATTGACCAGAGGCCAGCT PGQPGDMNCTTQRI GCCAAAAAAAGTGCTCAATTGTTTTTTGTGGTCTTTGAATGGAAAGATCCTTTCATCCAGAAAGTCCAAGATATAGTCACTGCCAAT NYTDPFSNQTVKSA CCTTGGAACACAATTGCTCTTCTCTGTGGCGCCTTCTTGGCATTATTTAAAGCAGCAGAGTTTGCCAAACTGAGTATAAAATGGATG LIVQGPREVKKREL ATCAAAATTAGAAAGAGATACCTTAAAAGAAGAGGTCAGGCAACGAGCCACATAAGCTGAAGTCACCTCGCGTTGTTTAGAGAACTG VFLQFRLNKSSEDF TCCACATCAATGGGAGCTGTCATCACTTCCACTTTGTAAACGGAGCTATCAACAATCCTGTACTCACTTGAAGAAATGGGGCCTTGC SAIDYLLFSSFQEF TGGGAGGAACAGCATGTAAAACTGGAACTTCTAACCCCGTCCCAAAAGAGGCGGTGTAGAGCCTAATAGAAGAGACTAATGGATAAA LQSPNRVGFMQACE CCTACAAGTTATTTAAATATTTAAATTATTAATAAACTTTTTAAAGAGCTGGCCAATGACTTTTGAATAGGGTTTGTAGAAGATGCC SACSSWKFSGGFRT TTTCTTCCTGTTTGGTTCATTGTATTGTATTAGGTTAAGCTCTACTAGGGTAATGAAGGCTCTACTTTTCACTTTTTAAAAGTGGAC WVKMSLVKTKEEDG AAAAGAGTGTGATTTTCTTTTTCCAAAAATTCCTGAGTATCAAGACGTGCAGGTCATGCTTTGGAGCCTATGCACTGTACACAATGG REAVEFRQETSVVN CAAAACCCTATGACTTTGGCATCATCTGCCATTGATGTCCAGCCTCTGACATGCTCTTTGATTTGTTAAATGTTAAATGAGACTTTA YIDQRPAAKKSAQL AGGCTACTAGAAACTAGTAATTAAGTTTCTTAATGGACTGAGTAGCCACCTACTTGTCCGGCTAGAATGTTTGTTGATGTATGAGTT FFVVFEWKDPFIQK TAGATTAACACTCAAAAGCACTAGGACAGATGTACATAGAAGGTGCCTACTCATTGTATTTTGATGATTTCATTAACAGGTAAATAA VQDIVTANPWNTIA AAGTTAATACAAAAGGAACGAGTGTGACAATATGAATATCTGCTCAATCATCGGGCACAATTACTTTCATTTGGTGACTTCCAAGGA LLCGAFLALFKAAE CAAAAAGGTAGTATGAGTCTGGACTCCCAAGATGGATCTAACTCTCAAGGTATGTTCTAACTGCTTCCAGGGAAGGGTTTGTTAGGC FAKLSIKWMIKIRK ATGGCAACTGATGGCAGGTGTCCAGAAAGAGTGACCTGGTGTCCCCGAGGAAGCTGGGTTAACTCTTTACTGTGTCCACAAAACTAC RYLKRRGQATSHIS CCATCATATGAGGAAGGGGTATACGCAGTGTGACCCTCAAAAAGCTTTTAGCCTAGCCTTTGACAGAAATGAGTATGCATTAAAAAA AAGTCTATTTTTCACATTAAGGTTCTAAAAATTGTTTCCAGAGTTTTAAATTATTTATGTGCCTGTTGCTTCAAAGAGGACTTGGTA GCATTTCCTAAATTTTGTAATCTGGCTTCCGATAATCCAAAGGGAATAACTCAAATGTATGAATAGGCATTTTAAATGGGAAGAAAC TGTTTTTTGGATGAATGATTAAAAGTGAACTGTATAAAG SEQIDNO.:20 SEQIDNO.:67 GCGGACGTGGGCAGGAGGGCTGGAAAAGCCGGCGCTGGAGCGGGAACGGGAGTAGCTGCCTGGGCGCCAAAGGCCGCGGCACTCCCA MFRKGKKRHSSSSS CGCGGACCCCGAAGTCCGCAACCCGGGGATGGGCCCGCGGCTGCGAGGGGATCTTCTCTGGATCAAGCAATGGTGGTGAAAAATGTT QSSEISTKSKSVDS TCGCAAGGGCAAAAAACGACACAGTAGTAGCAGTTCCCAAAGTAGCGAAATCAGTACTAAGAGCAAGTCTGTGGATTCTAGCCTTGG SLGGLSRSSTVASL GGGTCTTTCACGATCCAGCACTGTGGCCAGCCTCGACACAGATTCCACCAAAAGCTCAGGACAAAGCAACAATAATTCAGATACCTG DTDSTKSSGQSNNN TGCAGAATTTCGAATAAAATATGTTGGTGCCATTGAGAAACTGAAACTCTCCGAGGGAAAAGGCCTTGAAGGGCCATTAGACCTGAT SDTCAEFRIKYVGA AAATTATATAGACGTTGCCCAGCAAGATGGAAAGTTGCCTTTTGTTCCTCCGGAGGAAGAATTTATTATGGGAGTTTCCAAGTATGG IEKLKLSEGKGLEG CATAAAAGTATCAACATCAGATCAATATGATGTTTTGCACAGGCATGCTCTCTACTTAATAATCCGGATGGTGTGTTACGATGACGG PLDLINYIDVAQQD TCTGGGGGCGGGAAAAAGCTTACTGGCTCTGAAGACCACAGATGCAAGCAATGAGGAATACAGCCTGTGGGTTTATCAGTGCAACAG GKLPFVPPEEEFIM CCTGGAACAAGCACAAGCCATTTGCAAGGTTTTATCCACCGCTTTTGACTCTGTATTAACATCTGAGAAACCCTGAATCCTGCAATC GVSKVGIKVSTSDQ AAGTAGAAGTCAACTTCATCTGAAAGTTCAGCTGTTTTCAAACTGCAATGCTGAAATGTTATGCAAATAATGAAGTTATCCCTTGCT YDVLHRHALYLIIR CTAGATTTTCTGAAGAAAATGGATTGTGTAAAATGCTGATCATTTGTTTATTAAAATGTGTCCTATTACACAGTGAGTTAACTCTCA MVCYDDGLGAGKSL ATGAAGTCATCTATTTTCTGGGCTAAAAAACTTCATTTGTCTTTTTCAACTTCTAATAAGCTTAACCTAAGTGTCACGAAGACGAGA LALKTTDASNEEYS TGTCACAGAGGTCCACTCAGTGACAAACACACACTGAAGGCCTGAGGGAAGACTGAGGACATGGGCTCAGTGGTGGCTTCCCAGTCA LWVYQCNSLEQAQA TGGTATCACTGGCATGGACCTCTGTCCGGCAGAGGTGTGGACTGGAGACCAGGATTCATGCTGGTCTGGAACAATGACATTGCCAAC ICKVLSTAFDSVLT TTAAGACACACAAAGCAGATTTTCAGAAGTGTCTGGTCAAGATAACATGCTGGCCAACCACAATTCCTAGAGTTAAGAGAACCTTAA SEKP AAGATTACCGCTCATGCTAAAAGTATGTAAAGATCCCATGTACAGTATGATAGTGTACTTTTTTTAAAGGACTGTCAATATACAAAA CTTTAAAGATTAAAAACATTAAAAATAAAAAAA SEQIDNO.:21 SEQIDNO.:68 CCTCGCCCCGCCTACGCGGGAACCCAACCGCGGCGACCGGACGTGCACTCCTCCAGTAGCGGCTGCACGTCGTGCAATGGCCCGCTA MARYEEVSVSGFEE TGAGGAGGTGAGCGTGTCCGGCTTCGAGGAGTTCCACCGGGCCGTGGAACAGCACAATGGCAAGACCATTTTCGCCTACTTTACGGG FHRAVEQHNGKTIF TTCTAAGGACGCCGGGGGGAAAAGCTGGTGCCCCGACTGCGTGCAGGCTGAACCAGTCGTACGAGAGGGGCTGAAGCACATTAGTGA AYFTGSKDAGGKSW AGGATGTGTGTTCATCTACTGCCAAGTAGGAGAAAAGCCTTATTGGAAAGATCCAAATAATGACTTCAGAAAAAACTTGAAAGTAAC CPDCVQAEPVVREG AGCAGTGCCTACACTACTTAAGTATGGAACACCTCAAAAACTGGTAGAATCTGAGTGTCTTCAGGCCAACCTGGTGGAAATGTTGTT LKHISEGCVFIYCQ CTCTGAAGATTAAGATTTTAGGATGGCAATCATGTCTTGATGTCCTGATTTGTTCTAGTATCAATAAACTGTATACTTGCTTTGAAT VGEKPYWKDPNNDF TCATGTTAGCAATAAATGATGTTAAAAAAACTGGCATGTGTCTAAACAATAGAGTGCTATTAAAATGCCCATGAACCTTTAGTTTGC RKNLKVTAVPTLLK CTGTAATACATGGATATTTTTAAGATATAAAGAAGTCTTCAGAAATAGCAGTAAAGGCTCAAAGGAACGTGATTCTTGAAGGTGACG YGTPQKLVESECLQ GTAATACCTAAAAACTCCTAAAGGTGCAGAGC ANLVEMLFSED SEQIDNO.:22 SEQIDNO.:69 TCGGAGCTGAACTTCCTAAAAGACAAAGTGTTTATCTTTCAAGATTCATTCTCCCTGAATCTTACCAACAAAACACTCCTGAGGAGA MNSSKSSETQCTER AAGAAAGAGAGGGAGGGAGAGAAAAAGAGAGAGAGAGAAACAAAAAACCAAAGAGAGAGAAAAAATGAATTCATCTAAATCATCTGA GCFSSQMFLWTVAG AACACAATGCACAGAGAGAGGATGCTTCTCTTCCCAAATGTTCTTATGGACTGTTGCTGGGATCCCCATCCTATTTCTCAGTGCCTG IPILFLSACFITRC TTTCATCACCAGATGTGTTGTGACATTTCGCATCTTTCAAACCTGTGATGAGAAAAAGTTTCAGCTACCTGAGAATTTCACAGAGCT VVTFRIFQTCDEKK CTCCTGCTACAATTATGGATGAGGTTCAGTCAAGAATTGTTGTCCATTGAACTGGGAATATTTTCAATCCAGCTGCTACTTCTTTTC FQLPENFTELSCYN TACTGACACCATTTCCTGGGCGTTAAGTTTAAAGAACTGCTCAGCCATGGGGGCTCACCTGGTGGTTATCAACTCACAGGAGGAGCA YGSGSVKNCCPLNW GGAATTCCTTTCCTACAAGAAACCTAAAATGAGAGAGTTTTTTATTGGACTGTCAGACCAGGTTGTCGAGGGTCAGTGGCAATGGGT EYFQSSCYFFSTDT GGACGGCACACCTTTGACAAAGTCTCTGAGCTTCTGGGATGTAGGGGAGCCCAACAACATAGCTACCCTGGAGGACTGTGCCACCAT ISWALSLKNCSAMG GAGAGACTCTTCAAACCCAAGGCAAAATTGGAATGATGTAACCTGTTTCCTCAATTATTTTCGGATTTGTGAAATGGTAGGAATAAA AHLVVINSQEEQEF TCCTTTGAACAAAGGAAAATCTCTTTAAGAACAGAAGGCACAACTCAAATGTGTAAAGAAGGAAGAGCAAGAACATGGCCACACCCA LSYKKPKMREFFIG CCGCCCCACACGAGAAATTTGTGCGCTGAACTTCAAAGGACTTCATAAGTATTTGTTACTCTGATATAAATAAAAATAAGTAGTTTT LSDQVVEGQWQWVD AAATGTTATAATTCATGTTACTGGCTGAAGTGCATTTTCTCTCTACGTTAGTCTCAGGTCCTCTTCCCAGAATTTACAAAGCAATTC GTPLTKSLSFWDVG ATACCTTTTGCTACATTTGCCTCATTTTTTAGTGTTCGTATGAAAGTACAGGGACACGGAGCCAAGACAGAGTCTAGCAAAGAAGGG EPNNIATLEDCATM GATTTTGGAAGGTGCCTTCCAAAAATCTCCTGAATCCGGGCTCTGTAGCAGGTCCTCTTCTTTCTAGCTTCTGACAAGTCTGTCTTC RDSSNPRQNWNDVT TCTTCTTGGTTTCATACCGTTCTTATCTCCTGCCCAAGCATATATCGTCTCTTTACTCCCCTGTATAATGAGTAAGAAGCTTCTTCA CFLNYFRICEMVGI AGTCATGAAACTTATTCCTGCTCAGAATACCGGTGTGGCCTTTCTGGCTACAGGCCTCCACTGCACCTTCTTAGGGAAGGGCATGCC NPLNKGKSL AGCCATCAGCTCCAAACAGGCTGTAACCAAGTCCACCCATCCCTGGGGCTTCCTTTGCTCTGCCTTATTTTCAATTGACTGAATGGA TCTCACCAGATTTTGTATCTATTGCTCAGCTAGGACCCGAGTCCAATAGTCAATTTATTCTAAGCGAACATTCATCTCCACACTTTC CTGTCTCAAGCCCATCCATTATTTCTTAACTTTTATTTTAGCTTTCGGGGGTACATGTTAAAGGCTTTTTATATAGGTAAACTCATG TCGTGGAGGTTTGTTGTACAGATTATTTCATCACCCAGGTATTAAGCCCAGTGCCTAATATTGTTTTTTTCGGCTCCTCTCCCTCCT CCTACCTTCCGCCCTCAAGTAGACTCCAGTGTCTGTTATTCCCTTCTTTGTGTTTATGAATTCTCATCATTTAGCTCCCACTTATAA GTGAGGACATGCAGTATTTGGTTTTCTGTTCCCATGTTTGCTAAGGATAATGGTTTCCAGTTCTACCGATGTTCCCACAAAAGACAT AATTTTCTTTTTTAAGGCTGCTTAGTATTCCATGGTATCTATGTATCACATTTTCTCTATCCAATCTATTGTTGACTCACATTTAGA TTGATTCCATGTTTTTGCTATTGTGAATAGTGCTGCAATGAACATTCGTGTGCATGTGTCTTTATGGTAGAAAGATTTATATTTCTC TGAGTATGTATCCAGTAATAGCCCATTCATTTATTGCATAAAATTCTACCAATAC SEQIDNO.:23 SEQIDNO.:70 CCTCCTCTCCCTGGCTTTTGTGTTGGTGCCTCCGAGCTGCAAGGAGGGTGCGCTGGAGGAGGAGGAGGGGGGCCCGGAGTGAGAGGC MAQPILGHGSLQPA ACCCCCTTCACGCGCGCGCGCGCACACGGTGCCGGCGCACGCACACACGGGCGGACACACACACACGCGCGCACACACACACGCACA SAAGLASLELDSSL GAGCTCGCTCGCCTCGAGCGCACGAACGTGGACGTTCTCTTTGTGTGGAGCCCTCAAGGGGGGTTGGGGCCCCGGTTCGGTCCGGGG DQYVQIRIFKIIVI GAGATGGCGCAGCCCATCCTGGGCCATGGGAGCCTGCAGCCCGCCTCGGCCGCTGGCCTGGCGTCCCTGGAGCTCGACTCGTCGCTG GDSNVGKTCLTFRF GACCAGTACGTGCAGATTCGCATCTTCAAAATAATCGTGATTGGGGACTCCAACGTGGGCAAGACCTGCCTGACCTTCCGCTTCTGC CGGTFPDKTEATIG GGGGGTACCTTCCCAGACAAGACTGAAGCCACCATCGGCGTGGACTTCAGGGAGAAGACCGTGGAAATCGAGGGCGAGAAGATCAAG VDFREKTVEIEGEK GTTCAGGTGTGGGACACAGCAGGTCAGGAACGTTTCCGCAAAAGCATGGTCGAGCATTACTACCGCAACGTACATGCCGTGGTCTTC IKVQVWDTAGQERF GTCTATGACGTCACCAAGATGACATCTTTCACCAACCTCAAAATGTGGATCCAAGAATGCAATGGGCATGCTGTGCCCCCACTAGTC RKSMVEHYYRNVHA CCCAAAGTGCTTGTGGGCAACAAGTGTGACTTGAGGGAACAGATCCAGGTGCCCTCCAACTTAGCCCTGAAATTTGCTGATGCCCAC VVFVYDVTKMTSFT AACATGCTCTTGTTTGAGACATCGGCCAAGGACCCCAAAGAGAGCCAGAACGTGGAGTCGATTTTCATGTGCTTGGCTTGCCGATTG NLKMWIQECNGHAV AAGGCCCAGAAATCCCTGCTGTATCGTGATGCTGAGAGGCAGCAGGGGAAGGTGCAGAAACTGGAGTTCCCACAGGAAGCTAACAGT PPLVPKVLVGNKCD AAAACTTCCTGTCCTTGTTGAAACCAAACGATATAAATACAAGATAAATTATCACTGGAGTTTTTTCTTTCCCTTTTTTCTGTGCCT LREQIQVPSNLALK GCATAATGCTGACACCTGCTTGTTTCCATACAAATTGATATCAAAATAAAATTTGTATAGATTAAAAAAAAAAAAAAAAAAAAA FADAHNMLLFETSA KDPKESQNVESIFM CLACRLKAQKSLLY RDAERQQGKVQKLE FPQEANSKTSCPC SEQIDNO.:24 SEQIDNO.:71 GGAGCGCGTGAGGCTCCGGCGCGCAAGCCCGGAGCAGCCCGCTGGGGCGCACAGGGTCGCGCGGGCGCGGGGATGGAGGACGGCGTG MEDGVAGPQLGAAA GCCGGTCCCCAGCTCGGGGCCGCGGCGGAGGCGGCGGAGGCGGCCGAGGCGCGAGCGCGGCCCGGGGTGACGCTGCGGCCCTTCGCG EAAEAAEARARPGV CCCCTCTCGGGGGCGGCCGAGGCGGACGAGGGCGGCGGCGACTGGAGCTTCATTGACTGCGAGATGGAGGAGGTGGACCTGCAGGAC TLRPFAPLSGAAEA CTGCCCAGCGCCACCATCGCCTGTCACCTGGACCCGCGCGTGTTCGTGGACGGCCTGTGCCGGGCCAAATTTGAGTCCCTCTTTAGG DEGGGDWSFIDCEM ACGTATGACAAGGACATCACCTTTCAGTATTTTAAGAGCTTCAAACGAGTCAGAATAAACTTCAGCAACCCCTTCTCCGCAGCAGAT EEVDLQDLPSATIA GCCAGGCTCCAGCTGCATAAGACTGAGTTTCTGGGAAAGGAAATGAAGTTATATTTTGCTCAGACCTTACACATAGGAAGCTCACAC CHLDPRVFVDGLCR CTGGCTCCGCCAAATCCAGACAAGCAGTTTCTGATCTCCCCTCCCGCCTCTCCGCCAGTGGGATGGAAACAAGTGGAAGATGCGACC AKFESLFRTYDKDI CCAGTCATAAACTATGATCTCTTATATGCCATCTCCAAGCTGGGGCCAGGGGAAAAGTATGAATTGCACGCAGCGACTGACACCACT TFQYFKSFKRVRIN CCCAGCGTGGTGGTCCATGTATGTGAGAGTGATCAAGAGAAGGAGGAAGAAGAGGAAATGGAAAGAATGAGGAGACCTAAGCCAAAA FSNPFSAADARLQL ATTATCCAGACCAGGAGGCCGGAGTACACGCCGATCCACCTCAGCTGAACTGGCACGCGACGAGGACGCATTCCAAATCATACTCAC HKTEFLGKEMKLYF GGGAGGAATCTTTTACTGTGGAGGTGGCTGGTCACGACTTCTTCGGAGGTGGCAGCCGAGATCGGGGTGGCAGAAATCCCAGTTCAT AQTLHIGSSHLAPP GTTGCTCAGAAGAGAATCAAGGCCGTGTCCCCTTGTTCTAATGCTGCACACCAGTTACTGTTCATGGCACCCGGGAATGACTTGGGC NPDKQFLISPPASP CAATCACTGAGTTTGTGGTGATCGCACAAGGACATTTGGGACTGTCTTGAGAAAACAGATAATGATAGTGTTTTGTACTTGTTCTTT PVGWKQVEDATPVI TCTGGTAGGTTCTGTCTGTGCCAAGGGCAGGTTGATCAGTGAGCTCAGGAGAGAGCTTCCTGTTTCTAAGTGGCCTGCAGGGGCCAC NYDLLYAISKLGPG TCTCTACTGGTAGGAAGAGGTACCACAGGAAGCCGCCTAGTGCAGAGAGGTTGTGAAAACAGCAGCAATGCAATGTGGAAATTGTAG EKYELHAATDTTPS CGTTTCCTTTCTTCCCTCATGTTCTCATGTTTGTGCATGTATATTACTGATTTACAAGACTAACCTTTGTTCGTATATAAAGTTACA VVVHVCESDQEKEE CCGTTGTTGTTTTACATCTTTTGGGAAGCCAGGAAAGCGTTTGGAAAACGTATCACCTTTCCCAGATTCTCGGATTCTCGACTCTTT EEEMERMRRPKPKI GCAACAGCACTTGCTTGCGGAACTCTTCCTGGAATGCATTCACTCAGCATCCCCAACCGTGCAACGTGTAACTTGTGCTTTTGCAAA IQTRRPEYTPIHLS AGAAGTTGATCTGAAATTCCTCTGTAGAATTTAGCTTATACAATTCAGAGAATAGCAGTTTCACTGCCAACTTTTAGTGGGTGAGAA ATTTTAGTTTAGGTGTTTGGGATCGGACCTCAGTTTCTGTTGTTTCTTTTATGTGGTGGTTTCTATACATGAATCATAGCCAAAAAC TTTTTTGGAAACTGTTGGTTGAGATAGTTGGTTCTTTTACCCCACGAAGACATCAAGATACACTTGTAAATAAAGCTGATAGCATAT ATTCATACCTGTTGTACACTTGGGTGAAAAGTATGGCAGTGGGAGACTAAGATGTATTAACCTACCTGTGAATCATATGTTGTAGGA AAAGCTGTTCCCATGTCTAACAGGACTTGAATTCAAAGCATGTCAAGTGGATAGTAGATCTGTGGCGATATGAGAGGGATGCAGTGC CTTTCCCCATTCATTCCTGATGGAATTGTTATACTAGGTTAACATTTGTAATTTTTTTGTAGTTGTAATGTGTATGTCTGGTAAATA GGTATTATATTTTGGCCTTACAATACCGTAACAATGTTTGTCATTTTGAAATACTTAATGCCAAGTAACAATGCATGCTTTGGAAAT TTGGAAGATGGTTTTATTCTTTGAGAAGCAAATATGTTTGCATTAAATGCTTTGATTGTTCATATCAAGAAATTGATTGAACGTTCT CAAACCCTGTTTACGGTACTTGGTAAGAGGGAGCCGGTTTGGGAGAGACCATTGCATCGCTGTCCAAGTGTTTCTTGTTAAGTGCTT TTAAACTGGAGAGGCTAACCTCAAAATATTTTTTTTAACTGCATTCTATAATAAATGGGCACAGTATGCTCCTTACAGAAAAAAAAA AAAAAAAAAAAAAAAAAAAAA SEQIDNO.:25 SEQIDNO.:72 GATTGCGAGCCAGGAGGAGGAAGCCGGCGGTGGCCCCGTCAGCAGCCGGCTGCTGAGAGGCCGGTAGGCGGCGGCGGTCCCGAGGGG MKLYSLSVLYKGEA CGGCGGCCGCGCTGCTCCCTGAGAACGGGTCCCGCAGCTGGGCAGGCGGGCGGCCTGAGGGCGCGGAGCCATGAAGCTGTACAGCCT KVVLLKAAYDVSSF CAGCGTCCTCTACAAAGGCGAGGCCAAGGTGGTGCTGCTCAAAGCCGCATACGATGTGTCTTCCTTCAGCTTTTTCCAGAGATCCAG SFFQRSSVQEFMTF CGTTCAGGAATTCATGACCTTCACGAGTCAACTGATTGTGGAGCGCTCATCGAAAGGCACTAGAGCTTCTGTCAAAGAACAAGACTA TSQLIVERSSKGTR TCTGTGCCACGTCTACGTCCGGAATGATAGTCTTGCAGGTGTGGTCATTGCTGACAATGAATACCCATCCCGGGTGGCCTTTACCTT ASVKEQDYLCHVYV GCTGGAGAAGGTACTAGATGAATTCTCCAAGCAAGTCGACAGGATAGACTGGCCAGTAGGATCCCCTGCTACAATCCATTACCCAGC RNDSLAGVVIADNE CCTGGATGGTCACCTCAGTAGATACCAGAACCCACGAGAAGCTGATCCCATGACTAAAGTGCAGGCCGAACTAGATGAGACCAAAAT YPSRVAFTLLEKVL CATTCTGCACAACACCATGGAGTCTCTGTTAGAGCGAGGTGAGAAGCTAGATGACTTGGTGTCCAAATCCGAGGTGCTGGGAACACA DEFSKQVDRIDWPV GTCTAAAGCCTTCTATAAAACTGCCCGGAAACAAAACTCATGCTGTGCCATCATGTGATGCAGCCTGCCAGAGGCCCAATGCTGGAA GSPATIKYPALDGK TGGCACCATCATTCACATCAGAACTGCAGCCCCTGGAAAAGAAGAGACAGCCATAGACGAGGAGCCAGAGTGGGGGCAGACTGGCCA LSRYQNPREADPMT TTTTTATTTTGAAGTTCCTGCGAGAAATGGATGGTGGAAGGGTGGCGAATGTTCAAATTCATATGTGTGGTAGTGATTCTTGGAAAG KVQAELDETKIILH AATTTGAGGTCCCCAAAGGTGTATTTTTGGGCAAATGAAACCATAAACTCCGACTGGCTTCTGTAGATGCCAAAGGGCTCTTTTTCA NTMESLLERGEKLD GCTAACCCTGGGAAGGCTCTGTGGGAGGGAGGTCGGAGCCAGCTGTTTCTCGATCTTTGGTATATCTTTGGATCTTATTTGTACATT DLVSKSEVLGTQSK AATGATATTAACACTCCAGTGGGGGGTGGGGAGTCCCTGATGCTAGGGCTGGGGTGGGTGGAGTTTGAAGACTCTTGGGAAAGCCTC AFYKTARKQNSCCA TCCTGGGGCCACTGTTGGGGGTGGGAGTGAGCCCACCACAGAGGCCACAGGCAGGCCCCCACTTCAGGCCCAAGGCCTGGGGCGGGG IM GGAACAGTCACTGGGTCTCAGATTCTGAGACTGTTGTTTAGCTTACCTTTCTGCTAGGATTGGCTTCCCGCAGAGGGCAGGGCCCAT CCTAAGCAGCTTCCAAGTCCCACAAAGGTGGCTTGTGGGAGGATTTGGAAGGAGCTGCATTGTGGGCGGGGAGTGTGTGGGTTGGGT TCGTACCAGCAAGTAGACTAGGAACTGAGCCCAGGAAAGGGGGATGTTTTCCTGGTGTTTGGATGGTCAGCTGGGAGTGTCCATCAT CAGGGGAAGATCAAACACAGGTGCACTCAGCTGCCCAGGGCCTCTGGGACACTTGCCTTGACTTGCAACTTGCCTTGAACATCACGA TCAAAGCAGCAGGTGCTGTGGTCTCTCAAAATTGATTTTTATTTGACTCTGTGGCTCTAAGACTGCCTTGAACCGCCTGAGGCCTAT GCATCTGAACAAGTGGGTCTCTCCCTTGAGCACCAGGAGTGGGTGCCAGCCGGCCCCGAGGATTCCCAGCACCCCACCTATGGTCTT GCCAGCATAGGCTTGCTAGTTCCTTCTTGGTCAGAGGTAGCTGCAGAGGGGGGAGGCCAAGGGTTTGGTCTAAGCTGTGCCCTGCCA CCTGGCAGGAGGCCCACTCACTGCCCAAGTCATGGCAACAGGCTGGAGCAGCCCAGGAGATGGGCCTAAAATGTTCTGGATCCCTTG GGTCCTAGTGTTATGTTCCAGTCTGCCCACCTGTGCTCAGGATGCAGCCCTGGGATCCAGCACCCATGGAAGCTTCTGCTGGGATGG TGTCACCTATGGGTTTTGAACCAGTGTGGTATGGTCCTTGGGAGCTCTGCTCTGAGCTTGCCACACTGCTGAGAGCACCCACTGTCC TGACCAGAGTCTCAGTGGTCCTGACCCCCAATGTGGGCAGGGGCTGGGCAGGAGGGTGGGGTCTGCTGTGGGTTCAGAGGACTCCAC CTCCTGGCTGGTTTACCTGCTGCTGCCCATTTTCTCTGGGTACTGCTGGCCAGAGGACTTTAGCCTACCCCTGAAGAGCCTGTCCAT GTCATTTTCCTACTGCCATAGATACCCTAAGCCCAGGGCCCCTTGAGGCCCAGACTCAGCCTGCCCACTGGTGCCGGAGACGGAGTG GAGTGGGCCTGGATCCGAGGGATGCTACCTCTCCCTTTCCCACTTGAGGACCCTGGGGAGAGATGGGGGCGGGGAAAATGGAGGTAT GAATTTGGGGTAAGAGGAAGTGAGATCTCCGCTTGCAGGTCAGCCCCTGCCTTGCAGGGCGGGCTGGCTTGACTCAGGCCCTGTGAG ATAGAGGGCCCAGCCCAGCCCCACCCACAGATCCCCTGCTCCTGTTGTGTTCTGTTGTAAATCATTTGGCGAGACTGTATTTTAGTA ACTGCTGCCTAACTTCCCTGTGTTCTATTTGAGAGGCGCCTGTCTGGATAAAGTTGTCTTGAAATTTCAAAAAAAAAAAAAAAAAA SEQIDNO.:26 SEQIDNO.:73 CGCTGTCGCCGCCAGTAGCAGCCTTCGCCAGCAGCGCCGCGGCGGAACCGGGCGCAGGGGAGCGAGCCCGGCCCCGCCAGCCCAGCC MDHYDSQQTNDYMQ CAGCCCAGCCCTACTCCCTCCCCACGCCAGGGCAGCAGCCGTTGCTCAGAGAGAAGGTGGAGGAAGAAATCCAGACCCTAGCACGCG PEEDWDRDLLLDPA CGCACCATCATGGACCATTATGATTCTCAGCAAACCAACGATTACATGCAGCCAGAAGAGGACTGGGACCGGGACCTGCTCCTGGAC WEKQQRKTFTAWCN CCGGCCTGGGAGAAGCAGCAGAGAAAGACATTCACGGCATGGTGTAACTCCCACCTCCGGAAGGCGGGGACACAGATCGAGAACATC SHLRKAGTQIENIE GAAGAGGACTTCCGGGATGGCCTGAAGCTCATGCTGCTGCTGGAGGTCATCTCAGGTGAACGCTTGGCCAAGCCAGAGCGAGGCAAG EDFRDGLKLMLLLE ATGAGAGTGCACAAGATCTCCAACGTCAACAAGGCCCTGGATTTCATAGCCAGCAAAGGCGTCAAACTGGTGTCCATCGGAGCCGAA VISGERLAKPERGK GAAATCGTGGATGGGAATGTGAAGATGACCCTGGGCATGATCTGGACCATCATCCTGCGCTTTGCCATCCAGGACATCTCCGTGGAA MRVHKISNVNKALD GAGACTTCAGCCAAGGAAGGGCTGCTCCTGTGGTGTCAGAGAAAGACAGCCCCTTACAAAAATGTCAACATCCAGAACTTCCACATA FIASKGVKLVSIGA AGCTGGAAGGATGGCCTCGGCTTCTGTGCTTTGATCCACCGACACCGGCCCGAGCTGATTGACTACGGGAAGCTGCGGAAGGATGAT EEIVDGNVKMTLGM CCACTCACAAATCTGAATACGGCTTTTGACGTGGCAGAGAAGTACCTGGACATCCCCAAGATGCTGGATGCCGAAGACATCGTTGGA IWTIILRFAIQDIS ACTGCCCGACCGGATGAGAAAGCCATCATGACTTACGTGTCTAGCTTCTACCACGCCTTCTCTGGAGCCCAGAAGGCGGAGACAGCA VEETSAKEGLLLWC GCCAATCGCATCTGCAAGGTGTTGGCCGTCAACCAGGAGAACGAGCAGCTTATGGAAGACTACGAGAAGCTGGCCAGTGATCTGTTG QRKTAPYKNVNIQN GAGTGGATCCGCCGCACAATCCCGTGGCTGGAGAACCGGGTGCCCGAGAACACCATGCATGCCATGCAACAGAAGCTGGAGGACTTC FHISWKDGLGFCAL CGGGACTACCGGCGCCTGCACAAGCCGCCCAAGGTGCAGGAGAAGTGCCAGCTGGAGATCAACTTCAACACGCTGCAGACCAAGCTG IHRHRPELIDYGKL CGGCTCAGCAACCGGCCTGCCTTCATGCCCTCTGAGGGCAGGATGGTCTCGGACATCAACAATGCCTGGGGCTGCCTGGAGCAGGTG RKDDPLTNLNTAFD GAGAAGGGCTATGAGGAGTGGTTGCTGAATGAGATCCGGAGGCTGGAGCGACTGGACCACCTGGCAGAGAAGTTCCGGCAGAAGGCC VAEKYLDIPKMLDA TCCATCCACGAGGCCTGGACTGACGGCAAAGAGGCCATGCTGCGACAGAAGGACTATGAGACCGCCACCCTCTCGGAGATCAAGGCC EDIVGTARPDEKAI CTGCTCAAGAAGCATGAGGCCTTCGAGAGTGACCTGGCTGCCCACCAGGACCGTGTGGAGCAGATTGCCGCCATCGCACAGGAGCTC MTYVSSFYHAFSGA AATGAGCTGGACTATTATGACTCACCCAGTGTCAACGCCCGTTGCCAAAAGATCTGTGACCAGTGGGACAATCTGGGGGCCCTAACT QKAETAANRICKVL CAGAAGCGAAGGGAAGCTCTGGAGCGGACCGAGAAACTGCTGGAGACCATTGACCAGCTGTACTTGGAGTATGCCAAGCGGGCTGCA AVNQENEQLMEDYE CCCTTCAACAACTGGATGGAGGGGGCCATGGAGGACCTGCAGGACACCTTCATTGTGCACACCATTGAGGAGATCCAGGGACTGACC KLASDLLEWIRRTI ACAGCCCATGAGCAGTTCAAGGCCACCCTCCCTGATGCCGACAAGGAGCGCCTGGCCATCCTGGGCATCCACAATGAGGTGTCCAAG PWLENRVPENTMHA ATTGTCCAGACCTACCACGTCAATATGGCGGGCACCAACCCCTACACAACCATCACGCCTCAGGAGATCAATGGCAAATGGGACCAC MQQKLEDFRDYRRL GTGCGGCAGCTGGTGCCTCGGAGGGACCAAGCTCTGACGGAGGAGCATGCCCGACAGCAGCACAATGAGAGGCTACGCAAGCAGTTT HKPPKVQEKCQLEI GGAGCCCAGGCCAATGTCATCGGGCCCTGGATCCAGACCAAGATGGAGGAGATCGGGAGGATCTCCATTGAGATGCATGGGACCCTG NFNTLQTKLRLSNR GAGGACCAGCTCAGCCACCTGCGGCAGTATGAGAAGAGCATCGTCAACTACAAGCCAAAGATTGATCAGCTGGAGGGCGACCACCAG PAFMPSEGRMVSDI CTCATCCAGGAGGCGCTCATCTTCGACAACAAGCACACCAACTACACCATGGAGCACATCCGTGTGGGCTGGGAGCAGCTGCTCACC NNAWGCLEQVEKGY ACCATCGCCAGGACCATCAATGAGGTAGAGAACCAGATCCTGACCCGGGATGCCAAGGGCATCAGCCAGGAGCAGATGAATGAGTTC EEWLLNEIRRLERL CGGGCCTCCTTCAACCACTTTGACCGGGATCACTCCGGCACACTGGGTCCCGAGGAGTTCAAAGCCTGCCTCATCAGCTTGGGTTAT DHLAEKFRQKASIH GATATTGGCAACGACCCCCAGGGAGAAGCAGAATTTGCCCGCATCATGAGCATTGTGGACCCCAACCGCCTGGGGGTAGTGACATTC EAWTDGKEAMLRQK CAGGCCTTCATTGACTTCATGTCCCGCGAGACAGCCGACACAGATACAGCAGACCAAGTCATGGCTTCCTTCAAGATCCTGGCTGGG DYETATLSEIKALL GACAAGAACTACATTACCATGGACGAGCTGCGCCGCGAGCTGCCACCCGACCAGGCTGAGTACTGCATCGCGCGGATGGCCCCCTAC KKHEAFESDLAAHQ ACCGGCCCCGACTCCGTGCCAGGTGCTCTGGACTACATGTCCTTCTCCACGGCGCTGTACGGCGAGAGTGACCTCTAATCCACCCCG DRVEQIAAIAQELN CCCGGCCGCCCTCGTCTTGTGCGCCGTGCCCTGCCTTGCACCTCCGCCGTCGCCCATCTCCTGCCTGGGTTCGGTTTCAGCTCCCAG ELDYYDSPSVNARC CCTCCACCCGGGTGAGCTGGGGCCCACGTGGCATCGATCCTCCCTGCCCGCGAAGTGACAGTTTACAAAATTATTTTCTGCAAAAAA QKICDQWDNLGALT GAAAAAAAAGTTACGTTAAAAACCAAAAAACTACATATTTTATTATAGAAAAAGTATTTTTTCTCCACCAGACAAATGGAAAAAAAG QKRREALERTEKLL AGGAAAGATTAACTATTTGCACCGAAATGTCTTGTTTTGTTGCGACATAGGAAAATAACCAAGCACAAAGTTATATTCCATCCTTTT ETIDQLYLEYAKRA TACTGATTTTTTTTTCTTCTATCTGTTCCATCTGCTGTATTCATTTCTCCAATCTCATGTCCATTTTGGTGTGGGAGTCGGGGTAGG APFNNWMEGAMEDL GGGTACTCTTGTCAAAAGGCACATTGGTGCGTGTGTGTTTGCTAGCTCACTTGTCCATGAAAATATTTTATGATATTAAAGAAAATC QDTFIVHTIEEIQG TTTTG LTTAHEQFKATLPD ADKERLAILGIHNE VSKIVQTYHVNMAG TNPYTTITPQEING KWDHVRQLVPRRDQ ALTEEHARQQHNER LRKQFGAQANVIGP WIQTKMEEIGRISI EMHGTLEDQLSHLR QYEKSIVNYKPKID QLEGDHQLIQEALI FDNKHTNYTMEHIR VGWEQLLTTIARTI NEVENQILTRDAKG ISQEQMNEFRASFK KFDRDHSGTLGPEE FKACLISLGYDIGN DPQGEAEFARIMSI VDPNRLGVVTFQAF IDFMSRETADTDTA DQVMASFKILAGDK NYITMDELRRELPP DQAEYCIARMAPYT GPDSVPGALDYMSF STALYGESDL SEQIDNO.:27 SEQIDNO.:74 TGCGGGCAGGATTCACGCCGCTGTGACCCGGAGGTCCTCAGGGGGCGAAGCCCCGGCCTAGGCCTCGCGGAGATGCCCAGCTGCGGT MPSCGACTCGAAAV GCTTGTACTTGCGGCGCGGCGGCCGTCCGGCTCATCACCTCCTCACTCGCCTCCGCGCAGAGAGGTATTTCTGGTGGTCGCATTCAT RLITSSLASAQRGI ATGTCAGTTTTAGGAAGGCTTGGGACATTTGAAACTCAGATTCTGCAAAGAGCTCCTCTTAGATCCTTTACAGAAACACCAGCATAC SGGRIHMSVLGRLG TTTGCCTCAAAAGATGGGATAAGTAAAGATGGTTCTGGAGATGGAAATAAGAAATCAGCAAGTGAGGGAAGTAGTAAGAAATCAGGC TFETQILQRAPLRS TCTGGGAATTCTGGGAAAGGTGGAAACCAGCTGCGCTGTCCTAAATGTGGCGACTTGTGCACACATGTAGAGACCTTTGTATCATCC FTETPAYFASKDGI ACCCGTTTTGTCAAGTGTGAAAAGTGTCATCATTTTTTTGTTGTGCTATCTGAAGCAGACTCAAAGAAAAGCATAATTAAAGAACCT SKDGSGDGNKKSAS GAATCAGCAGCAGAAGCTGTAAAATTGGCATTCCAACAGAAACCACCACCTCCCCCTAAGAAGATTTATAACTACCTCGACAAGTAT EGSSKKSGSGNSGK GTTGTTGGCCAGTCATTTGCTAAGAAGGTGCTTTCAGTTGCTGTGTACAATCATTATAAGAGAATATATAATAATATCCCAGCTAAT GGNQLRCPKCGDLC CTGAGACAGCAAGCAGAGGTTGAGAAGCAGACATCATTAACACCAAGAGAGTTAGAAATAAGAAGACGGGAGGATGAGTACAGATTT THVETFVSSTRFVK ACAAAATTGCTTCAGATTGCTGGAATTAGCCCACATGGTAATGCTTTAGGAGCATCAATGCAGCAACAGGTAAATCAACAAATACCT CEKCHHFFVVLSEA CAGGAAAAACGAGGAGGTGAAGTATTGGATTCTTCTCATGATGACATAAAACTTGAAAAAAGTAATATTTTGCTGCTTGGACCAACT DSKKSIIKEPESAA GGTCAGGTAAAACTCTGCTGGCACAAACCCTAGCTAAATGCCTTGATGTCCCTTTTTGCTATCTGTGACTGTACAACTTTGACTCAG EAVKLAFQQKPPPP GCTGGATATGTAGGCGAAGATATTGAATCTGTGATTGCAAAACTACTCCAAGATGCCAATTATAATGTGGAAAAAGCACAACAAGGA PKKIYNYLDKYVVG ATTGTCTTTCTGGATGAAGTAGATAAGATTGGCAGTGTGCCAGGCATTCATCAATTACGGGATGTAGGTGGAGAAGGCGTTCAGCAA QSFAKKVLSVAVYN GGCTTATTAAAACTACTAGAAGGCACAATAGTCAATGTTCCAGAAAAGAATTCCCGAAAGCTCCGTGGAGAAACAGTTCAAGTTGAT HYKRIYNNIPANLR ACAACAAACATCCTGTTTGTGGCATCTGGTGCTTTCAATGGTTTAGACAGAATCATCAGCAGGAGGAAAAATGAAAAGTATCTTGGA QQAEVEKQTSLTPR TTTGGAACACCATCTAATCTGGGAAAAGGCAGAAGGGCTGCAGCTGCTGCAGACCTTGCTAATCGAAGTGGGGAATCGAATACTCAC ELEIRRREDEYRFT CAAGACATTGAAGAAAAAGATCGGTTATTGCGTCATGTGGAAGCCAGAGATCTGATTGAGTTTGGCATGATTCCTGAGTTTGTGGGA KLLQIAGISPHGNA CGGTTGCCTGTGGTGGTTCCATTGCATAGCCTAGATGAGAAAACACTTGTACAAATATTAACTGAGCCACGAAATGCTGTTATTCCT LGASMQQQVNQQIP CAGTACCAGGCCTTATTCAGCATGGATAAGTGTGAACTGAATGTTACTGAGGATGCTTTGAAAGCTATAGCCAGATTGGCACTAGAA QEKRGGEVLDSSHD CGAAAAACAGGTGCACGAGGCCTTCGGTCCATAATGGAAAAGCTGTTACTAGAACCAATGTTTGAAGTCCCTAATTCTGATATCGTA DIKLEKSNILLLGP TGTGTGGAGGTTGACAAAGAAGTAGTAGAAGGAAAAAAGGAACCAGGATACATCCGGGCTCCAACAAAAGAATCCTCTGAAGAGGAG TGSGKTLLAQTLAK TATGACTCTGGAGTTGAAGAAGAAGGATGGCCCCGCCAAGCAGATGCTGCAAACAGCTAAACTGTCATATTGCTGTCTTGTATATAC CLDVPFAICDCTTL AGCTTTTCCTTCTTTTGTTTAGGATCATAATTGTCTCTACAGTCTGATATTAAAGGCATTGGATCTATCTTGGATATCATACATGGT TQAGYVGEDIESVI CAGAGAAGCCTTTAGGAGAAGAATCAGATCATGTATATAATTGTAACATCACATTGATTTTACGGAAGATGTTATATGGACTTTAAT AKLLQDANYNVEKA GACACAATGTTTAGAGATAAAATGTACATTATTTTGGTTCAGTTTTTTAAAAAAAATATGCTTTAACAAAATTCTTAGGAATTCTTT QQGIVFLDEVDKIG TAAGCAATGCAGGTATTGCGATAACTGTAGATTTTACAATAATGTTACTCTACAAATGGGAAAATAAATTCTTTAAAATTGAATATT SVPGIHQLRDVGGE GA GVQQGLLKLLEGTI VNVPEKNSRKLRGE TVQVDTTNILFVAS GAFNGLDRIISRRK NEKYLGFGTPSNLG KGRRAAAAADLANR SGESNTHQDIEEKD RLLRHVEARDLIEF GMIPSFVGRLPVVV PLHSLDEKTLVQIL TEPRNAVIPQYQAL FSMDKCELNVTEDA LKAIARLALERKTG ARGLRSIMEKLLLE PMFEVPNSDIVCVE VDKEVVEGKKEPGY IRAPTKESSEEEYD SGVEEEGWPRQADA ANS SEQIDNO.:28 SEQIDNO.:75 GGCGCCCAAGCCGCCGCCGCCAGATCGGTGCCGATTCCTGCCCTGCCCCGACCGCCAGCGCGACCATGTCCCATCACTGGGGGTACG MSHHWGYGKHNGPE GCAAACACAACGGACCTGAGCACTGGCATAAGGACTTCCCCATTGCCAAGGGAGAGCGCCAGTCCCCTGTTGACATCGACACTCATA HWHKDFPIAKGERQ CAGCCAAGTATGACCCTTCCCTGAAGCCCCTGTCTGTTTCCTATGATCAAGCAACTTCCCTGAGGATCCTCAACAATGGTCATGCTT SPVDIDTHTAKYDP TCAACGTGGAGTTTGATGACTCTCAGGACAAAGCAGTGCTCAAGGGAGGACCCCTGGATGGCACTTACAGATTGATTCAGTTTCACT SLKPLSVSYDQATS TTCACTGGGGTTCACTTGATGGACAAGGTTCAGAGCATACTGTGGATAAAAAGAAATATGCTGCAGAACTTCACTTGGTTCACTGGA LRILNNGHAFNVEF ACACCAAATATGGGGATTTTGGGAAAGCTGTGCAGCAACCTGATGGACTGGCCGTTCTAGGTATTTTTTTGAAGGTTGGCAGCGCTA DDSQDKAVLKGGPL AACCGGGCCTTCAGAAAGTTGTTGATGTGCTGGATTCCATTAAAACAAAGGGCAAGAGTGCTGACTTCACTAACTTCGATCCTCGTG DGTYRLIQFHFHWG GCCTCCTTCCTGAATCCCTGGATTACTGGACCTACCCAGGCTCACTGACCACCCCTCCTCTTCTGGAATGTGTGACCTGGATTGTGC SLDGQGSEHTVDKK TCAAGGAACCCATCAGCGTCAGCAGCGAGCAGGTGTTGAAATTCCGTAAACTTAACTTCAATGGGGAGGGTGAACCCGAAGAACTGA KYAAELHLVHWNTK TGGTGGACAACTGGCGCCCAGCTCAGCCACTGAAGAACAGGCAAATCAAAGCTTCCTTCAAATAAGATGGTCCCATAGTCTGTATCC YGDFGKAVQQPDGL AAATAATGAATCTTCGGGTGTTTCCCTTTAGCTAAGCACAGATCTACCTTGGTGATTTGGACCCTGGTTGCTTTGTGTCTAGTTTTC AVLGIFLKVGSAKP TAGACCCTTCATCTCTTACTTGATAGACTTACTAATAAAATGTGAAGACTAGACCAATTGTCATGCTTGACACAACTGCTGTGGCTG GLQKVVDVLDSIKT GTTGGTGCTTTGTTTATGGTAGTAGTTTTTCTGTAACACAGAATATAGGATAAGAAATAAGAATAAAGTACCTTGACTTTGTTCACA KGKSADFTNFDPRG GCATGTAGGGTGATGAGCACTCACAATTGTTGACTAAAATGCTGCTTTTAAAACATAGGAAAGTAGAATGGTTGAGTGCAAATCCAT LLPESLDYWTYPGS AGCACAAGATAAATTGAGCTAGTTAAGGCAAATCAGGTAAAATAGTCATGATTCTATGTAATGTAAACCAGAAAAAATAAATGTTCA LTTPPLLECVTWIV TGATTTCAAGATGTTATATTAAAGAAAAACTTTAAAAATTATTATATATTTATAGCAAAGTTATCTTAAATATGAATTCTGTTGTAA LKEPISVSSEQVLK TTTAATGACTTTTGAATTACAGAGATATAAATGAAGTATTATCTGTAAAAATTGTTATAATTAGAGTTGTGATACAGAGTATATTTC FRKLNFNGEGEPEE CATTCAGACAATATATCATAACTTAATAAATATTGTATTTTAGATATATTCTCTAATAAAATTCAGAATTCT LMVDNWRPAQPLKN RQIKASFK SEQIDNO.:29 SEQIDNO.:76 GCTGAGCGCGGGCGCGGGGCCGCTACGTGCGCGGGGAGCGCGGGGAGCGCGGGGAGCGCGGGGCTGCGCTCGTGTGCGCTCCTGGGC MFPEQQKEEFVSVW GCTCGCCGCCGCCGCTGCCGCCGCGCGCCTTTGAGTCAGCAAACTCCGCGGCCCGCAAGCCCGGCTCGGCCCGGCCCTGCTCTGTTC VRDPRIQKEDFWHS TGCCCGGAGGAGCCGCCCATTGATCGTGTCCTGTGCTGAAGATGTTTCCGGAACAACAGAAAGAGGAATTTGTAAGTGTCTGGGTTC YIDYEICIHTNSMC GAGATCCTAGGATTCAGAAGGAGGACTTCTGGCATTCTTACATTGACTATGAGATATGTATTCATACTAATAGCATGTGTTTTACAA FTMKTSCVRRRYRE TGAAAACATCCTGTGTACGAAGAAGATATAGAGAATTCGTGTGGCTGAGGCAGAGACTCCAAAGTAATGCGTTGCTGGTACAACTGC FVWLRQRLQSNALL CAGAACTTCCATCTAAAAACCTGTTTTTCAACATGAACAATCGCCAGCACGTGGATCAGCGTCGCCAGGGTCTGGAAGATTTCCTCA VQLPELPSKNLFFN GAAAAGTCCTACAGAATGCACTTTTGCTTTCAGATAGCAGCCTTCACCTCTTCTTACAGAGCCATCTGAATTCAGAAGACATTGAGG MNNRQHVDQRRQGL CGTGTGTTTCTGGGCAGACTAAGTACTCTGTGGAAGAAGCAATTCACAAGTTTGCCTTAATGAATAGACGTTTCCCTGAAGAAGATG EDFLRKVLQNALLL AAGAAGGAAAAAAAGAAAATGATATAGATTATGATTCAGAAAGTTCATCCTCTGGGCTTGGACACAGTAGTGATGACAGCAGTTCAC SDSSLHLFLQSHLN ATGGATGTAAAGTAAATACAGCTCCGCAGGAATCCTGAAAAATAATTCTAATGTTACTATCTTAGGAATAGCAAATTATGTCCAGTC SEDIEACVSGQTKY ATAGAGAAGAAAGCTTCATAATAATACATTCTTACCTAAAGCTCACTGTCATGATGTTAGGTATTTAAATTCTTAAAGATGTTGGGT SVEEAIHKFALMNR TGTTTATTAGTGGTATTTTTATGTTGTCTTATTTTAGGTAAGCTTCTGTGTAAAGCTAAAAATCCTGTGAATACAATACTATCCTTT RFPEEDEEGKKEND ACAGGCAGACATTATTGGTAAACAAGATCTTGCCCTCCAATGAAATGACTTACATGTTTTAAAAAACCGAGTTGGTTTTATTGAATT IDYDSESSSSGLGH TAAAAAGATAGGTAACTAAGTAGCATTTAAAATCAAGATAGAGCATTCCTTCTTGTATCAGTGGGGCAGTGTTACCATAAACACGGT SSDDSSSHGCKVNT GTATATGTTGTTAAACCCTATGAAGAGTAACAGTGTAGACCAGACTGCCTCTCTCAGATATGTGCCTGATATTTTGTGGATACCTCC APQES CCTGCACTGGCAAAACACTATGCTTTTGGGTGTTAGACTGAAATATTTTAAGAGTATTTAACCTTTCCAGTATTCTGTTTCACGCTT AGATGGAAATGTATCTTATGAATAGAGACATATTAAAATAATGTTTACATCTTAGAAAAAACATAGATAGTGCTAGTAATATTACTT ATAACTGTAATATATAGATTCAGAAATACATTTTCATTATCCAAAATCAGCTTCAACAAATGGTTTCTGGAGACAAATAATTTGTTT TCATTATCATTGTATAATCAGGTTAATGATTTATTTTTTGACTAAATGTGCAATTTCTTATCACTAGATAACTTTCAGTATCAGTGG TGGTTACTTATTACTTAAATCAGAGGAAGGATTTTATAAAGATTAATAAATTTAATTTTACCAATAAATATTCCCATAATTTAGAAA AGGATGTCGACTTGCTAATTTCAGAAATAATTATTCATTTTTAAAAAGCCCCTTTTAAAGCATCTACTTGAAGATTGGTATAATTTT CATAAAATGTCTTTTTTTTTAGTGTCCCAAAGATATCTTAGATAAACTATTTTGAAGTTCAGATTTCAGATGAGGCAACATTTTCTT GAGATAATTACCCAAGTTTCATCCATGTTGAATGGTACAAAATATTTCTGTGAAACTAACAGGAAGATATTTTCAGATAACTAGGAT AACTTGTTGCTTTGTTACCCAGCCTAATTGAAGAGTGGCAGAGGCTACTACAAAAAGCAACCTTTTCATTTTCACTAAGAGTTTAAA AGCTATTGTATTATTAAAAAGTCTTTACAATGCTTGTTTCAAAGAACCAACAGAAAAAAAAGCTAAGAAAACTGAGAACTAACATTA AAAAAATTAAATTTAGAATAAGAATGATTTCTTTAATTTGTCCTTTTTTTCTTTGGTCTAAAACATTATTAAATTTTTGTAAATATT TTGATTTAATGTGTCTTAGATCCTCATTATTTTAATACAGGAAAAGAAAAGATTTAGTAATTTCTTACCATGCTAATATGTAAAGTT CATGCCATCCAGGCATTTAAGAGCGATCCTCATCCCTTCAGCAATATGTATTTGAGTTCACACTATTTCTGTTTTACAGCAGTTTTG AAAAACACATACTATGCCACCAATTGTCATATTATTTTTAGATGATGTAACATAGCCATCAAAATTAATATTATGTAATGCCTAATA CTTAGTATGTAAATGTCACGAGATCATTTTTACATTAAACGTGAAAAAAAATCAAAAAAAAAAAAAAA SEQIDNO.:30 SEQIDNO.:77 GAACCTCCTCGCGACTTTCCAAGGTATCTTTCAGATGAAGGCATTGAAGCTTGCACAAGCTCTCCAGACAAAGTCAATGTAAATGAC MLRLQMTDGHISCT ATCATCCTGATTGCTCTCAATATCTGAGAACAATTGGCAAGAAATTCCTCCCCAGTGACATCAATAGTGGAAAGGTAGAAAAGCTCG AVEFSYMSKISLNT AAGGTCCATGTGTTTTGCAAATTCAAAAAATTCGCAATGTTGCTGCACCAAAGGATAATGAAGAATCTCAGGCTGCACCAAGGATGC PPGTKVKLSGIVDI TGCGATTACAGATGACTGATGGTCATATAAGTTGCACAGCAGTAGAATTTAGTTATATGTCAAAAATAAGCCTGAACACACCACCTG KNGFLLLNDSNTTV GAACTAAAGTTAAGCTCTCAGGCATTGTTGACATAAAAAATGGATTCCTGCTCTTGAATGACTCTAACACCACAGTTCTTGGTGGTG LGGEVEHLIEKWEL AAGTGGAACACCTTATTGAGAAATGGGAGTTACAGAGAAGCTTATCAAAACACAATAGAAGCAATATTGGAACTGAAGGTGGACCAC QRSLSKHNRSNIGT CGCCTTTTGTGCCTTTTGGACAGAAGTGTGTATCTCATGTCCAAGTGGATAGCAGAGAACTTGATCGAAGAAAAACATTGCAAGTTA SGGFPPFVPFGQKC CAATGCCTGTCAAACCTACAAATGATAATGATGAATTTGAAAAGCAAAGGACGGCTGCTATTGCTGAAGTTGCAAAGAGCAAGGAAA VSHVQVDSRELDRR CCAAGACATTTGGAGGAGGTGGTGGTGGTGCTAGAAGTAATCTCAATATGAATGCTGCTGGTAACCGAAATAGGGAAGTTTTACAGA KTLQVTMPVKPTND AAGAAAAGTCAACCAAATCAGAGGGAAAACATGAAGGTGTCTATAGAGAACTGGTTGATGAGAAAGCTCTGAAGCACATAACGGAAA NDEFEKQRTAAIAE TGGGCTTCAGTAAGGAAGCATCGAGGCAAGCTCTTATGGATAATGGCAACAACTTAGAAGCAGCACTGAACGTACTTCTTACAAGCA VAKSKETKTFGGGG ATAAACAGAAACCTGTTATGGGTCCTCCTCTGAGAGGTAGAGGAAAAGGCAGGGGGCGAATAAGATCTGAAGATGAAGAGGACCTGG GGARSNLNMNAAGN GAAATGCAAGGCCATCAGCACCAAGCACATTATTTGATTTCTTGGAATCTAAAATGGGAACTTTGAATGTGGAAGAACCTAAATCAC RNREVLQKEKSTKS AGCCACAGCAGCTTCATCAGGGACAATACAGATCATCAAATACTGAGCAAAATGGAGTAAAAGATAATAATCATCTGAGACATCCTC EGKHEGVYRELVDE CTCGAAATGATACCAGGCAGCCAAGAAATGAAAAACCGCCTCGTTTTCAAAGAGACTCCCAAAATTCAAAGTCAGTTTTAGAAGGCA KALKHITEMGFSKE GTGGATTACCTAGAAATAGAGGTTCTGAAAGACCAAGTACTTCTTCAGTATCTGAAGTATGGGCTGAAGACAGAATCAAATGTGATA ASRQALMDNGNNLE GACCGTATTCTAGATATGACAGAACTAAAGATACTTCATATCCTTTAGGTTCTCAGCATAGTGATGGTGCTTTTAAAAAAAGAGATA AALNVLLTSNKQKP ACTCTATGCAAAGCAGATCAGGAAAAGGTCCCTCCTTTGCAGAGGCAAAAGAAAATCCACTTCCTCAAGGATCTGTAGATTATAATA VMGPPLRGRGKGRG ATCAAAAACGTGGAAAAAGAGAAAGCCAAACATCTATTCCTGACTATTTTTATGACAGGAAATCACAAACAATAAATAATGAAGCTT RIRSEDEEDLGNAR TCAGTGGTATAAAAATTGAAAAACATTTTAATGTAAATACTGATTATCAGAATCCAGTTCGAAGTAATAGTTTCATTGGTGTTCCAA PSAPSTLFDFLESK ATGGAGAAGTAGAAATGCCACTGAAAGGAAGACGAATAGGACCTATTAAGCCAGCAGGACCTGTCACAGCTGTACCCTGTGATGATA MGTLNVEEPKSQPQ AAATATTTTACAATAGTGGGCCCAAACGAAGATCTGGGCCAATTAAGCCAGAAAAAATACTAGAATCATCTATTCCTATGGAGTATG QLHQGQYRSSNTEQ CAAAAATGTGGAAACCTGGAGATGAATGTTTTGCACTTTATTGGGAAGACAACAAGTTTTACCGGGCAGAAGTTGAAGCCCTCCATT NGVKDNNHLRHPPR CTTCGGGTATGACAGCAGTTGTTAAATTCATTGACTACGGAAACTATGAAGAGGTGCTACTGAGCAATATCAAGCCCATTCAAACAG NDTRQPRNEKPPRF AGGCATGGGAGGAAGAAGGCACCTACGATCAAACTCTGGAGTTCCGTAGGGGAGGTGATGGCCAGCCAAGACGATCCACTCGGCCAA QRDSQNSKSVLEGS CCCAACAGTTTTACCAACCACCCCGGGCTCGGAACTAATAGGAAAAGACTCTTTGTGAAGAAACGAGCCAGTGACTGAAACACCCTG GLPRNRGSERPSTS GTGGAAACCTGTTGACAGACCTTCCACTTTCTCTTCAGAATAAGTAGCTGTGGTGGATATTATTATTTGAAGAAAGAAAAAACAGAT SVSEVWAEDRIKCD TTTAGGGTGGAAAAAACAGTCAACTCACACAAAGAATGGAAAAAAATACTGAGTTAAATTAAGCAAATACCTTTTACAAGTGAAAGG RPYSRYDRTKDTSY AAGAATTTTTCTTCTGCCGTCAATAAAACCATTGTGCTATTATTGTTTAAAAAAAAAAAAAAAAA PLGSQHSDGAFKKR DNSMQSRSGKGPSF AEAKENPLPQGSVD YNNQKRGKRESQTS IPDYFYDRKSQTIN NEAFSGIKIEKHFN VNTDYQNPVRSNSF IGVPNGEVEMPLKG RRIGPIKPAGPVTA VPCDDKIFYNSGPK RRSGPIKPEKILES SIPMEYAKMWKPGD ECFALYWEDNKFYR AEVEALHSSGMTAV VKFIDYGNYEEVLL SNIKPIQTEAWEEE GTYDQTLEFRRGGD GQPRRSTRPTQQFY QPPRARN SEQIDNO.:31 SEQIDNO.:78 ATAAATATCAGAGTGTGCTGCTGTGGCTTTGTGGAGCTGCCAGAGTAAAGCAAAGAGAAAGGAAGCAGGCCCGTTGGAAGTGGTTGT MWRSLGLALALCLL GACAACCCCAGCAATGTGGAGAAGCCTGGGGCTTGCCCTGGCTCTCTGTCTCCTCCCATCGGGAGGAACAGAGAGCCAGGACCAAAG PSGGTESQDQSSLC CTCCTTATGTAAGCAACCCCCAGCCTGGAGCATAAGAGATCAAGATCCAATGCTAAACTCCAATGGTTCAGTGACTGTGGTTGCTCT KQPPAWSIRDQDPM TCTTCAAGCCAGCTGATACCTGTGCATACTGCAGGCATCTAAATTAGAAGACCTGCGAGTAAAACTGAAGAAAGAAGGATATTCTAA LNSNGSVTVVALLQ TATTTCTTATATTGTTGTTAATCATCAAGGAATCTCTTCTCGATTAAAATACACACATCTTAAGAATAAGGTTTCAGAGCATATTCC ASUYLCILQASKLE TGTTTATCAACAAGAAGAAAACCAAACAGATGTCTGGACTCTTTTAAATGGAAGCAAAGATGACTTCCTCATATATGATAGATGTGG DLRVKLKKEGYSNI CCGTCTTGTATATCATCTTGGTTTGCCTTTTTCCTTCCTAACTTTCCCATATGTAGAAGAAGCCATTAAGATTGCTTACTGTGAAAA SYIVVNHQGISSRL GAAATGTGGAAACTGCTCTCTCACGACTCTCAAAGATGAAGACTTTTGTAAACGTGTATCTTTGGCTACTGTGGATAAAACAGTTGA KYTHLKNKVSEHIP AACTCCATCGCCTCATTACCATCATGAGCATCATCACAATCATGGACATCAGCACCTTGGCAGCAGTGAGCTTTCAGAGAATCAGCA VYQQEENQTDVWTL ACCAGGAGCACCAAATGCTCCTACTCATCCTGCTCCTCCAGGCCTTCATCACCACCATAAGCACAAGGGTCAGCATAGGCAGGGTCA LNGSKDDFLIYDRC CCCAGAGAACCGAGATATGCCAGCAAGTGAAGATTTACAAGATTTACAAAAGAAGCTCTGTCGAAAGAGATGTATAAATCAATTACT GRLVYHLGLPFSFL CTGTAAATTGCCCACAGATTCAGAGTTGGCTCCTAGGAGCTGATGCTGCCATTGTCGACATCTGATATTTGAAAAAACAGGGTCTGC TFPYVEEAIKIAYC AATCACCTGACAGTGTAAAGAAAACCTCCCATCTTTATGTAGCTGACAGGGACTTCGGGCAGAGGAGAACATAACTGAATCTTGTCA EKKCGNCSLTTLKD GTGACGTTTGCCTCCAGCTGCCTGACAAATAAGTCAGCAGCTTATACCCACAGAAGCCAGTGCCAGTTGACGCTGAAAGAATCAGGC EDFCKRVSLATVDK AAAAAAGTGAGAATGACCTTCAAACTAAATATTTAAAATAGGACATACTCCCCAATTTAGTCTAGACACAATTTCATTTCCAGCATT TVETPSPHYHHEHH TTTATAAACTACCAAATTAGTGAACCAAAAATAGAAATTAGATTTGTGCAAACATGGAGAAATCTACTGAATTGGCTTCCAGATTTT HNHGHQHLGSSELS AAATTTTATGTCATAGAAAATATTGACTCAAACCATATTTTTTATGATGGAGCAACTGAAAGGTGATTGCAGCTTTTGTTAATATGT ENQQPGAPNAPTHP CTTTTTTTTTCTTTTTCCAGTGTTCTATTTGCTTTAATGAGAATAGAAACGTAAACTATGACCTAGGGGTTTCTGTTGGATAATTAG APPGLHHHHKHKGQ CAGTTTAGAATGGAGGAAGAACAACAAAGACATGCTTTCCATTTTTTTCTTTACTTATCTCTCAAAACAATATTACTTTGTCTTTTC HRQGHPENRDMPAS AATCTTCTACTTTTAACTAATAAAATAAGTGGATTTTGTATTTTAAGATCCAGAAATACTTAACACGTGAATATTTTGCTAAAAAAG EDLQDLQKKLCRKR CATATATAACTATTTTAAATATCCATTTATCTTTTGTATATCTAAGACTCATCCTGATTTTTACTATCACACATGAATAAAGCCTTT CINQLLCKLPTDSE GTATCTTTCTTTCTCTAATGTTGTATCATACTCTTCTAAAACTTGAGTGGCTGTCTTAAAAGATATAAGGGGAAAGATAATATTGTC LAPRSUCCHCRHLI TGTCTCTATATTGCTTAGTAAGTATTTCCATAGTCAATGATGGTTTAATAGGTAAACCAAACCCTATAAACCTGACCTCCTTTATGG FEKTGSAITUQCKE TTAATACTATTAAGCAAGAATGCAGTACAGAATTGGATACAGTACGGATTTGTCCAAATAAATTCAATAAAAACCTTAAAGCTGAAA NLPSLCSUQGLRAE AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA ENITESCQURLPPA AUQISQQLIPTEAS ASURUKNQAKKUEU PSN SEQIDNO.:32 SEQIDNO.:79 CCGGGGCCCTACACGCCAGACCTGGCTCGGGGTGGGAGTGCAGAGGCAACCAAAAAGGAACCCACACCTCCCTCCAGGGCCCGGGGC MHYVHVHRVTTQPR GCTGTCAGACGGGGCAGCAACCAGGAGATTCCCTGGGCCTGCAGGAAGCCCTTCCGCGGACCGAAAGATTGTTCCCCATTTTGGAGA NKPQTKCPSGGQSQ TGAAGAAACTGAGACTCAAAGCAGCTGAGTGACCTTCCCAAGGACACACACTGAACTGGGCGGTGATCAGGATCTGAATGCACAGGG GPRGQFLDTVLAAM CGGGTGTTCAGCGATTGTTTACTACGTTGAACGTGACCTCCAGGAAAGCAGTTCTGGCCGAGATCCCCTGACAACGCAAAGCAAGAA CPIAMLLTADPGMP GTAACGTGGAAGGAGGCTCCCCAAGCTGGCTGGCCATTTTGCTGCTGTGTGTGGAGGTGCTGCCAGTGGCATGCCCAAACCCAAAGC PTCLWHTPHAKHKE TGGAAGAGGAATAAATTACAAGTGGTCAAGGTTGCATCCTTTTGAGCCCAGGACCTGCTTGTAAGCCGAGAGGGTTCTCTGGCCCTA HLSIHLNMVPKCVH ATCTAGCCAAGCACCATGGAGAGAATCAGTGCCTTCTTCAGCTCTATCTGGGACACCATCTTGACCAAACACCAAGAAGGCATCTAC MHVTHTHTNSGSRY AACACCATCTGCCTGGGAGTCCTCCTGGGCCTGCCACTCTTGGTGATCATCACACTCCTCTTCATCTGTTGCCATTGCTGCTGGAGC VGKYILLIKWSLAM CCACCAGGCAAGAGGGGCCAGCAGCCAGAGAAGAACAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGGATGAAGAAGACCTCTGGATC YFVQGSTLSTVTKM TCTGCTCAACCCAAGCTTCTCCAGATGGAGAAGAGACCATCACTGCCTGTTTAGTTAGGCAGGAAGCAGAGGTGTTTCCTTTCTGGG SHGKALPDSDTYIQ GCTAAGCCTCCTTCTGACCACACACAGACATTTCAGGAACCCCTGAAATAATGCACTATGTCCATGTCCACAGAGTAACTACTCAAC FPNQQGPHTPSIP CAAGGAACAAACCTCAGACTAAGTGTCCCAGTGGAGGGCAGTCCCAGGGACCACGTGGACAATTCTTGGATACTGTCTTGGCAGCTA TGTGTCCAATAGCAATGCTCCTTACTGCAGACCCAGGCATGCCTCCCACCTGTCTCTGGCATACCCCACATGCAAAGCACAAAGAAC ATTTATCCATACATCTCAATATGGTTCCCAAGTGTGTGCACATGCACGTAACACACACACACACAAATTCAGGTAGCAGGTACGTGG GCAAGTATATTCTGCTCATCAAATGGTCATTGGCTATGTACTTTGTGCAGGGAAGTACATTATCTACAGTCACAAAAATGTCTCATG GGAAAGCCTTGCCAGATTCAGACACATATATACAATTTCCTAACCAGCAAGGCCCCCATACACCATCTATTCCATAAACCACTCAGG TTACAGATGCATGCTTTCCTATTTCTAACTCTACACATAAACTTTTACTGGAAGTACTCATAATTGGACATTCCAGCAACCTGCTAC AGTCCCCACCCTTGTGTGTCTTGATACAGACACACCAAGTTTCTGTGCCTCTGACCCCTCACCTGTGCCAAGATGTTTAAAGTGTGA TGGTTCAAAATTCATTGAAAGCTCTTTTCTTGTAACTCATGACAAAGTCCGTCCTCATTGCCACTGAGAGGTGTTTAATGTGATCCA AGACCTCTCTGTGAAACATTACCCCCGCAAACCACTCAGCAAAGTGCCTTTCTCCAAGCAAGAACAAAGAGCTCTTGGTGGTGACTG CTAGAAAATTATGGAAGCCCACTCATTTATGTCAGTGGACTGCAACTGTGTACCTGTGCAATGTTTACAGATGGAAAGGGTGAGGAG ATGCTACACCTGAGCTAGGTATCTCCTATATAACCAAAGTTTCCAGCAGGGAAGGAACTAGACAATCATCAGTGCAGTCTCACAGAA GGCAACACTGGAAGTGATGTCATAAGGTTGTGATGTGTGCACGGTATGGCACAGGTGGGATGCAGAGGTAACAGAGTTTAAATGAAA GTAGGATGAAGCTATAAAGAGGTTTATTTATATTTATATTGAAGCTCAGGCAAGTGCCTTGCACACAGTAGGTACTTATAACTAACT GTGGTTACTGTTGGATATGTGATGTTGTTAAGGGTAAGCTTGTAATACCTCACCAGTTCTCCCCGAGTGATCTTCTCTTCTAAGTGA GCCCACTAATTGCTGCAATGGATGAAATTGGGTGTTTAATGCTGGAGAGCACATGTAGGTGACACATGTGCCTTGAGGTATGTGAGG ACATGTAAATTAGATCCACAGTGAGCTGAGGAGGGCTTTCCCCGCCAGAGTGAGGTTGGGAAGCAGAGTTAATCCACTTATAGGATG AACTGCTTGGTATTTTTATTGTATTGTGACTGTATTACAAAGATGGACAATTCACTCCTTGGGAGCAAGTTATGCTCTAGAAGTTTA TTTACAAATATGCTGGGCAGCTCTCTTGAAATATTTTCCCAAGGAAGCTATTCTACACAGTGGCAAAATTGCTATCTAATTAATAAT GTAGCTAAACTATGATATTTATAGTAGCAAAAAACTAAATTCTATAAGATTGCATTAAAGGAAAGATATATTCTATTTGCTCACTTG GGCTGCTTGGTACTCACCTGCCCTCCAGGTGTACTTTAGGCCTGTGGAGGGTGGGCATTTAGTGGTGACCCTTGCACCAGGGTTTTC TAACAGATGACCCTGTGAATCATAATTTAAACCTGCATATATTTTATAGCCAGTCACATTTGCCCTCTCACCCTATATGGCCATAAA CTGCCTAAGCACTCAGGCCTCCCACTCATCAACCCCTTTGACCAGAGAAAGAAGCACTCTGGTTCTCTATCCCCTTGTCACATAGAG AGTTTGTCATGGGGCCTCTGGCTGTGCCCTTCACATAACAGAATGACTTGCCATCTGCCTGCACCAAACCCAGGGATGTGGAAGACA TCTCCCCACAACTGCCACTGCTCACCAGGACAAGCTGCCCTTCCTGTCTCCACCTCTCAGTCCCCCTAGAATGGATGGCTGGGGAGA GGTGGAGGCTGACAGCTGAGACGTAGTGTCAGATATGATCTAGGAGGGCGGATCACCGGGATCCGGGACCATACAAGTAACATGGTT TCCATGGCAACTGCTTGCTCCTTTGAATTAAGACAGCAGTCAGTTGTCATTGCCATGACAAGGCCTCTATCTCCAGGCACAATGTCC CTGCTGTCTCCTAATCCAATGGACTTGCTCTCACCCCAGGGATGAAACACCCAGAAACTCACTTCTCAGTCACTTCCACAGCCGATG ACTCAGAAGAGCCAAACCCAGAATGGGGCCTCTCTTTTCCCCATCACAGACTCCCCTGACAACCTTTCCTGGCGTAACTAGAGGAGT CCCAGTGCAGGATAGGCCCTAAACGTTTTGTTAAATAAACAGGTGCATGAAAGGAGCCTAAGGCCATTGTTGATATCCACTCTCTTC TTTCCACTTCCTTCTCATCTTTTTCTCCATGTTTTATGCTTCTCTGATTCCCTCTTCTGCCTGCACCAGACCAGCCCCAGCCCTTTA TTCCTCTCCATTTTCACTCCTTCCAGCCTCTGTCCCTGAACTGCCACTGGCAACCCATGGGACCTCAGGQCCAGAGACTGCTTGACT CATCTGGGGAGGGTAAGTTCACGGGGGACAAAAAAATGATTCCTAAAGAAGAGGCTTCCTAGACCAGCACAGGCTCGAGAAAGACAT CCCCTAGGCCTGGACTTCTGAGCAGCTTTAGCCAGGCTCCGGACGGCAGCCAGAGGAGGCCTTTCCCCATTGCTCCTTTCCCCATTG CTCAATGGATTCCATGTTTCTTTTTCTTGGGGGGAGCAGGGAGGGAGAAAGGTAGAAAAATGGCAGCCACCTTTCCAAGAAAAATAT AAAGGGTCCAAGCTGTATAGTATTTGTCAGTATTTTTTTCTGTAAAATTCAAACACACACAAAAGAAAAATTTATTTAAATAAAATA CTTTGAAAATGAAAAGTCTTGATGTAGTCAGATGGTTACTCTCTTAACATTAGGTATTACCCCCACTCAGACATCACTCAGAAATGA TCAATGCAGGGACTCTTTCTGTGACACAAATGTCCCAGCCCTCCCTGGTCACCGCCTTCGCCATGGTAGAGTCATAGGTCTGAGGAT GAGGAATGTGGCTGTCTCACCCTTGCTTGCAAAACAGATGGCCTTGGAGACCAGACTCCCTCAAAGGTGCCAGCTACAGGAAAAATA TACTGATGTTCCTTGGCAACACTTACAGAACTTTCCATCAATGAGGTCCATCAATGGCTTCTTAAAGGAAAAGGGGGGAAATAGCAA AAACCTAAGGAAGAATGGACCTTTGAGTTAAATCCAGTGTTTGTTGGGAAAGGAGGGATCAAAAACCTCTATAGTAGCCACTAGGGC AAAAACTGTGTGTATGTGTGTGTGTAAGTGTGTGTACACTGTTCAATATGGTTCAATATGGTACCAATAGCCACATGTGACTATTTA AATTCATTGCAATGAAATAAAATTAAAGGTATACTAGCTC SEQIDNO.:33 SEQIDNO.:80 CTTTCACTGGCAAGAGACGGAGTCCTGGGTTTCAGTTCCAGTTGCCTGCGGTGGGCTGTGTGAGTTTGCCAAAGTCCCCTGCCCTCT MKTPWKVLLGLLGA CTGGGTCTCGGTTCCCTCGCCTGTCCACGTGAGGTTGGAGGAGCTGAACGCCGACGTCATTTTTAGCTAAGAGGGAGCAGGGTCCCC AALVTIITVPVVLL GAGTCGCCGGCCCAGGGTCTGCGCATCCGAGGCCGCGCGCCCTTTCCCCTCCCCCACGGCTCCTCCGGGCCCCGCACTCTGCGCCCC NKGTDDATADSRKT GGCTGCCGCCCAGCGCCCTACACCGCCCTCAGGGGGCCCTCGCGGGCTCCCCCCGGCCGGGATGCCAGTGCCCCGCGCCACGCGCGC YTLTDYLKNTYRLK CTGCTCCCGCGCCGCCTGCCCTGCAGCCTGCCCGCGGCGCCTTTATACCCAGCGGGCTCGGCGCTCACTAATGTTTAACTCGGGGCC LYSLRWISDHEYLY GAAACTTGCCAGCGGCGAGTGACTCCACCGCCCGGAGCAGCGGTGCAGGACGCGCGTCTCCGCCGCCCGCGGTGACTTCTGCCTGCG KQENNILVFNAEYG CTCCTTCTCTGAACGCTCACTTCCGAGGAGACGCCGACGATGAAGACACCGTGGAAGGTTCTTCTGGGACTGCTGGGTGCTGCTGCG NSSVFLENSTFDEF CTTGTCACCATCATCACCGTGCCCGTGGTTCTGCTGAACAAAGGCACAGATGATGCTACAGCTGACAGTCGCAAAACTTACACTCTA GHSINDYSISPDGQ ACTGATTACTTAAAAAATACTTATAGACTGAAGTTATACTCCTTAAGATGGATTTCAGATCATGAATATCTCTACAAACAAGAAAAT FILLEYNYVKQWRH AATATCTTGGTATTCAATGCTGAATATGGAAACAGCTCAGTTTTCTTGGAGAACAGTACATTTGATGAGTTTGGACATTCTATCAAT SYTASYDIYDLNKR GATTATTCAATATCTCCTGATGGGCAGTTTATTCTCTTAGAATACAACTACGTGAAGCAATGGAGGCATTCCTACACAGCTTCATAT QLITEERIPNNTQW GACATTTATGATTTAAATAAAAGGCAGCTGATTACAGAAGAGAGGATTCCAAACAACACACAGTGGGTCACATGGTCACCAGTGGGT VTWSPVGHKLAYVW CATAAATTGGCATATGTTTGGAACAATGACATTTATGTTAAAATTGAACCAAATTTACCAAGTTACAGAATCACATGGACGGGGAAA NNDIYVKIEPNLPS GAAGATATAATATATAATGGAATAACTGACTGGGTTTATGAAGAGGAAGTCTTCAGTGCCTACTCTGCTCTGTGGTGGTCTCCAAAC YRITWTGKEDIIYN GGCACTTTTTTAGCATATGCCCAATTTAACGACACAGAAGTCCCACTTATTGAATACTCCTTCTACTCTGATGAGTCACTGCAGTAC GITDWVYEEEVFSA CCAAAGACTGTACGGGTTCCATATCCAAAGGCAGGAGCTGTGAATCCAACTGTAAAGTTCTTTGTTGTAAATACAGACTCTCTCAGC YSALWWSPNGTFLA TCAGTCACCAATGCAACTTCCATACAAATCACTGCTCCTGCTTCTATGTTGATAGGGGATCACTACTTGTGTGATGTGACATGGGCA YAQFNDTEVPLIEY ACACAAGAAAGAATTTCTTTGCAGTGGCTCAGGAGGATTCAGAACTATTCGGTCATGGATATTTGTGACTATGATGAATCCAGTGGA SFYSDESLQYPKTV AGATGGAACTGCTTAGTGGCACGGCAACACATTGAAATGAGTACTACTGGCTGGGTTGGAAGATTTAGGCCTTCAGAACCTCATTTT RVPYPKAGAVNPTV ACCCTTGATGGTAATAGCTTCTACAAGATCATCAGCAATGAAGAAGGTTACAGACACATTTGCTATTTCCAAATAGATAAAAAAGAC KFFVVNTDSLSSVT TGCACATTTATTACAAAAGGCACCTGGGAAGTCATCGGGATAGAAGCTCTAACCAGTGATTATCTATACTACATTAGTAATGAATAT NATSIQITAPASML AAAGGAATGCCAGGAGGAAGGAATCTTTATAAAATCCAACTTAGTGACTATACAAAAGTGACATGCCTCAGTTGTGAGCTGAATCCG IGDHYLCDVTWATQ GAAAGGTGTCAGTACTATTCTGTGTCATTCAGTAAAGAGGCGAAGTATTATCAGCTGAGATGTTCCGGTCCTGGTCTGCCCCTCTAT ERISLQWLRRIQNY ACTCTACACAGCAGCGTGAATGATAAAGGGCTGAGAGTCCTGGAAGACAATTCAGCTTTGGATAAAATGCTGCAGAATGTCCAGATG SVMDICDYDESSGR CCCTCCAAAAAACTGGACTTCATTATTTTGAATGAAACAAAATTTTGGTATCAGATGATCTTGCCTCCTCATTTTGATAAATCCAAG WNCLVARQHIEMST AAATATCCTCTACTATTAGATGTGTATGCAGGCCCATGTAGTCAAAAAGCAGACACTGTCTTCAGACTGAACTGGGCCACTTACCTT TGWVGRFRPSEPHF GCAAGCACAGAAAACATTATAGTAGCTAGCTTTGATGGCAGAGGAAGTGGTTACCAAGGAGATAAGATCATGCATGCAATCAACAGA TLDGNSFYKIISNE AGACTGGGAACATTTGAAGTTGAAGATCAAATTGAAGCAGCCAGACAATTTTCAAAAATGGGATTTGTGGACAACAAACGAATTGCA EGYRHICYFQIDKK ATTTGGGGCTGGTCATATGGAGGGTACGTAACCTCAATGGTCCTGGGATCGGGAAGTGGCGTGTTCAAGTGTGGAATAGCCGTGGCG DCTFITKGTWEVIG CCTGTATCCCGGTGGGAGTACTATGACTCAGTGTACACAGAACGTTACATGGGTCTCCCAACTCCAGAAGACAACCTTGACCATTAC IEALTSDYLYYISN AGAAATTCAACAGTCATGAGCAGAGCTGAAAATTTTAAACAAGTTGAGTACCTCCTTATTCATGGAACAGCAGATGATAACGTTCAC EYKGMPGGRNLYKI TTTCAGCAGTCAGCTCAGATCTCCAAAGCCCTGGTCGATGTTGGAGTGGATTTCCAGGCAATGTGGTATACTGATGAAGACCATGGA QLSDYTKVTCLSCE ATAGCTAGCAGCACAGCACACCAACATATATATACCCACATGAGCCACTTCATAAAACAATGTTTCTCTTTACCTTAGCACCTCAAA LNPERCQYYSVSFS ATACCATGCCATTTAAAGCTTATTAAAACTCATTTTTGTTTTCATTATCTCAAAACTGCACTGTCAAGATGATGATGATCTTTAAAA KEAKYYQLRCSGPG TACACACTCAAATCAAGAAACTTAAGGTTACCTTTGTTCCCAAATTTCATACCTATCATCTTAAGTAGGGACTTCTGTCTTCACAAC LPLYTLHSSVNDKG AGATTATTACCTTACAGAAGTTTGAATTATCCGGTCGGGTTTTATTGTTTAAAATCATTTCTGCATCAGCTGCTGAAACAACAAATA LRVLEDNSALDKML GGAATTGTTTTTATGGAGGCTTTGCATAGATTCCCTGAGCAGGATTTTAATCTTTTTCTAACTGGACTGGTTCAAATGTTGTTCTCT QNVQMPSKKLDFII TCTTTAAAGGGATGGCAAGATGTGGGCAGTGATGTCACTAGGGCAGGGACAGGATAAGAGGGATTAGGGAGAGAAGATAGCAGGGCA LNETKFWYQMILPP TGGCTGGGAACCCAAGTCCAAGCATACCAACACGAGCAGGCTACTGTCAGCTCCCCTCGGAGAAGAGCTGTTCACAGCCAGACTGGC HFDKSKKYPLLLDV ACAGTTTTCTGAGAAAGACTATTCAAACAGTGTCAGGAAATCAAATATGCAAAGCACTGACTTCTAAGTAAAACCACAGCAGTTGAA YAGPCSQKADTVFR AAGACTCCAAAGAAATGTAAGGGAAACTGCCAGCAACGCAGGCCCCCAGGTGCCAGTTATGGCTATAGGTGCTACAAAAACACAGCA LNWATYLASTENII AGGGTGATGGGAAAGCATTGTAAATGTGCTTTTAAAAAAAAATACTGATGTTCCTAGTGAAAGAGGCAGCTTGAAACTGAGATGTGA VASFDGRGSGYQGD ACACATCAGCTTGCCCTGTTAAAAGATGAAAATATTTGTATCACAAATCTTAACTTGAAGGAGTCCTTGCATCAATTTTTCTTATTT KIMHAINRRLGTFE CATTTCTTTGAGTGTCTTAATTAAAAGAATATTTTAACTTCCTTGGACTCATTTTAAAAAATGGAACATAAAATACAATGTTATGTA VEDQIEAARQFSKM TTATTATTCCCATTCTACATACTATGGAATTTCTCCCAGTCATTTAATAAATGTGCCTTCATTTTTTCAGAAAAAAAAAAAAAAA GFVDNKRIAIWGWS YGGYVTSMVLGSGS GVFKCGIAVAPVSR WEYYDSVYTERYMG LPTPEDNLDHYRNS TVMSRAENFKQVEY LLIHGTADDNVHFQ QSAQISKALVDVGV DFQAMWYTDEDHGI ASSTAHQHIYTHMS HFIKQCFSLP SEQIDNO.:34 SEQIDNO.:81 CGCAGCGGGTCCTCTCTATCTAGCTCCAGCCTCTCGCCTGCGCCCCACTCCCCGCGTCCCGCGTCCTAGCCGACCATGGCCGGGCCC MAGPLRAPLLLLAI CTGCGCGCCCCGCTGCTCCTGCTGGCCATCCTGGCCGTGGCCCTGGCCGTGAGCCCCGCGGCCGGCTCCAGTCCCGGCAAGCCGCCG LAVALAVSPAAGSS CGCCTGGTGGGAGGCCCCATGGACGCCAGCGTGGAGGAGGAGGGTGTGCGGCGTGCACTGGACTTTGCCGTCGGCGAGTACAACAAA PGKPPRLVGGPMDA GCCAGCAACGACATGTACCACAGCCGCGCGCTGCAGGTGGTGCGCGCCCGCAAGCAGATCGTAGCTGGGGTGAACTACTTCTTGGAC SVEEEGVRRALDFA GTGGAGCTGGGCCGAACCACGTGTACCAAGACCCAGCCCAACTTGGACAACTGCCCCTTCCATGACCAGCCACATCTGAAAAGGAAA VGEYNKASNDMYHS GCATTCTGCTCTTTCCAGATCTACGCTGTGCCTTGGCAGGGCACAATGACCTTGTCGAAATCCACCTGTCAGGACGCCTAGGGGTCT RALQVVRARKQIVA GTACCGGGCTGGCCTGTGCCTATCACCTCTTATGCACACCTCCCACCCCCTGTATTCCCACCCCTGGACTGGTGGCCCCTGCCTTGG GVNYFLDVELGRTT GGAAGGTCTCCCCATGTGCCTGCACCAGGAGACAGACAGAGAAGGCAGCAGGCGGCCTTTGTTGCTCAGCAAGGGGCTCTGCCCTCC CTKTQPNLDNCPFH CTCCTTCCTTCTTGCTTCTCATAGCCCCGGTGTGCGGTGCATACACCCCCACCTCCTGCAATAAAATAGTAGCATCGGCAAAAAAAA DQPHLKRKAFCSPQ AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA IYAVPWQGTMTLSK STCQDA SEQIDNO.:35 SEQIDNO.:82 CCCAGCGGCCCTGCAGACTTGGCACAGAGCACACCCACCTGCCTTTGTCACAGCACACTAAGAAGGTTCTCTGTGGTGACCAGGCTG MEGSLQLLACLACV GGTAGAGGGCTGCTGGGTCTGCAGGCGTCAGAGCATGGAGGGGTCCCTCCAACTCCTGGCCTGCTTGGCCTGTGTGCTCCAGATGGG LQMGSLVKTRRDAS ATCCCTTGTGAAAACTAGAAGAGACGCTTCGGGGGATCTGCTCAACACAGAGGCGCACAGTGCCCCGGCGCAGCGCTGGTCCATGCA GDLLNTEAHSAPAQ GGTGCCCGCGGAGGTGAACGCGGAGGCTGGCGACGCGGCGGTGCTGCCCTGCACCTTCACGCACCCGCACCGCCACTACGACGGGCC RWSMQVPAEVNAEA GCTGACGGCCATCTGGCGCTCGGGCGAGCCGTACGCGGGCCCGCAGGTGTTCCGCTGCACCGCGGCGCCGGGCAGCGAGCTGTGCCA GDAAVLPCTFTHPH GACGGCGCTGAGCCTGCACGGCCGCTTCCGCCTGCTGGGCAACCCGCGCCGCAACGACCTGTCCCTGCGCGTCGAGCGCCTCGCCCT RHYDGPLTAIWRSG GGCGGACAGCGGCCGCTACTTCTGCCGCGTGGAGTTCACCGGCGACGCCCACGATCGCTATGAGAGTCGCCATGGGGTCCGTCTGCG EPYAGPQVFRCTAA CGTGACTGCTGCGCCGCGGATCGTCAACATCTCGGTGCTGCCGGGCCCCGCGCACGCCTTCCGCGCGCTCTGCACCGCCGAGGGGGA PGSELCQTALSLHG GCCCCCGCCCGCCCTCGCCTGGTCGGGTCCCGCCCCAGGCAACAGCTCCGCTGCCCTGCAGGGCCAGGGTCACGGCTACCAGGTGAC RFRLLGNPRRNDLS CGCCGAGTTGCCCGCGCTGACCCGCGACGGCCGCTACACGTGCACGGCGGCCAATAGCCTGGGCCGCGCCGAGGCCAGCGTCTACCT LRVERLALADSGRY GTTCCGCTTCCACGGCGCCCCCGGAACCTCGACCCTAGCGCTCCTGCTGGGCGCGCTGGGCCTCAAGGCCTTGCTGCTGCTTGGCAT FCRVEFTGDAHDRY TCTGGGAGCGCGTGCCACCCGACGCCGACTAGATCACCTGGTCCCCCAGGACACCCCTCCACGTGCGGACCAGGACACTTCACCTAT ESRHGVRLRVTAAP CTGGGGCTCAGCTGAAGAAATAGAAGATCTGAAAGACCTGCATAAACTCCAACGCTAG RIVNISVLPGPAHA FRALCTAEGEPPPA LAWSGPAPGNSSAA LQGQGHGYQVTAEL PALTRDGRYTCTAA NSLGRAEASVYLFR FHGAPGTSTLALLL GALGLKALLLLGIL GARATRRRLDHLVP QDTPPRADQDTSPI WGSAEEIEDLKDLH KLQR SEQIDNO.:36 TTTTCCCAGTCACGACGTTGTAAAACGACGGCCAGTGAATTCTAATACGACTCACTATAGGGAGACGAGAGCACCTGGATAGGTTCG CGTGGCGCGCCGCATGCGTCGACGGATCCTGAGAACTTCAGGCTCCTGGGCAACGTGCTGGTTATTGTGCTGTCTCATCATTTTGGC AAAGAATTCACTCCTCAGGTGCAGGCTGCCTATCAGAAGGTGGTGGCTGGTGTGGCCAATGCCCTGGCTCACAAATACCACTGAGAT CTTTTTCCCTCTGCCAAAAATTATGGGGACATCATGAAGCCCCTTGAGCATCTGACTTCTGGCTAATAAAGGAAATTTATTTTCATT GCAAAAAAAAAAAGCGGCCGCTAACTGTTGGTGCAGGCGCTCGGACCGCTAGCTTGGCGTAATCATGGTCATAGCTGTTTCCTGTGT GAAATTGTTATCCGCTCACAATTCCACACAACATACGAGCCGGAAGCATAAAGTGTAAAGCCTGGGGTGCCTAATGAGTGAGCTAAC TCACATTAATTGCGTTGCGCTCACTGCCCGCTTTCCAGTCGGGAAACCTGTCGTGCCAGCTGCATTAATGAATCGGCCAACGCGCGG GGAGAGGCGGTTTGCGTATTGGGCGCTCTTCCGCTTCCTCGCTCACTGACTCGCTGCGCTCGGTCGTTCGGCTGCGGCGAGCGGTAT CAGCTCACTCAAAGGCGGTAATACGGTTATCCACAGAATCAGGGGATAACGCAGGAAAGAACATGTGAGCAAAAGGCCAGCAAAAGG CCAGGAACCGTAAAAAGGCCGCGTTGCTGGCGTTTTTCCATAGGCTCCGCCCCCCTGACGAGCATCACAAAAATCGACGCTCAAGTC AGAGGTGGCGAAACCCGACAGGACTATAAAGATACCAGGCGTTTCCCCCTGGAAGCTCCCTCGTGCGCTCTCCTGTTCCGACCCTGC CGCTTACCGGATACCTGTCCGCCTTTCTCCCTTCGGGAAGCGTGGCGCTTTCTCAATGCTCACGCTGTAGGTATCTCAGTTCGGTGT AGGTCGTTCGCTCCAAGCTGGGCTGTGTGCACGAACCCCCCGTTCAGCCCGACCGCTGCGCCTTATCCGGTAACTATCGTCTTGAGT CCAACCCGGTAAGACACGACTTATCGCCACTGGCAGCAGCCACTGGTAACAGGATTAGCAGAGCGAGGTATGTAGGCGGTGCTACAG AGTTCTTGAAGTGGTGGCCTAACTACGGCTACACTAGAAGGACAGTATTTGGTATCTGCGCTCTGCTGAAGCCAGTTACCTTCGGAA AAAGAGTTGGTAGCTCTTGATCCGGCAAACAAACCACCGCTGGTAGCGGTGGTTTTTTTGTTTGCAAGCAGCAGATTACGCGCAGAA AAAAAGGATCTCAAGAAGATCCTTTGATCTTTTCTACGGGGTCTGACGCTCAGTGGAACGAAAACTCACGTTAAGGGATTTTGGTCA TGAGATTATCAAAAAGGATCTTCACCTAGATCCTTTTAAATTAAAAATGAAGTTTTAAATCAATCTAAAGTATATATGAGTAAACTT GGTCTGACAGTTACCAATGCTTAATCAGTGAGGCACCTATCTCAGCGATCTGTCTATTTCGTTCATCCATAGTTGCCTGACTCCCCG TCGTGTAGATAACTACGATACGGGAGGGCTTACCATCTGGCCCCAGTGCTGCAATGATACCGCGAGACCCACGCTCACCGGCTCCAG ATTTATCAGCAATAAACCAGCCAGCCGGAAGGGCCGAGCGCAGAAGTGGTCCTGCAACTTTATCCGCCTCCATCCAGTCTATTAATT GTTGCCGGGAAGCTAGAGTAAGTAGTTCGCCAGTTAATAGTTTGCGCAACGTTGTTGCCATTGCTACAGGCATCGTGGTGTCACGCT CGTCGTTTGGTATGGCTTCATTCAGCTCCGGTTCCCAACGATCAAGGCGAGTTACATGATCCCCCATGTTGTGCAAAAAAGCGGTTA GCTCCTTCGGTCCTCCGATCGTTGTCAGAAGTAAGTTGGCCGCAGTGTTATCACTCATGGTTATGGCAGCACTGCATAATTCTCTTA CTGTCATGCCATCCGTAAGATGCTTTTCTGTGACTGGTGAGTACTCAACCAAGTCATTCTGAGAATAGTGTATGCGGCGACCGAGTT GCTCTTGCCCGGCGTCAATACGGGATAATACCGCGCCACATAGCAGAACTTTAAAAGTGCTCATCATTGGAAAACGTTCTTCGGGGC GAAAACTCTCAAGGATCTTACCGCTGTTGAGATCCAGTTCGATGTAACCCACTCGTGCACCCAACTGATCTTCAGCATCTTTTACTT TCACCAGCGTTTCTGGGTGAGCAAAAACAGGAAGGCAAAATGCCGCAAAAAAGGGAATAAGGGCGACACGGAAATGTTGAATACTCA TACTCTTCCTTTTTCAATATTATTGAAGCATTTATCAGGGTTATTGTCTCATGAGCGGATACATATTTGAATGTATTTAGAAAAATA AACAAATAGGGGTTCCGCGCACATTTCCCCGAAAAGTGCCACCTGACGTCTAAGAAACCATTATTATCATGACATTAACCTATAAAA ATAGGCGTATCACGAGGCCCTTTCGTCTCGCGCGTTTCGGTGATGACGGTGAAAACCTCTGACACATGCAGCTCCCGGAGACGGTCA CAGCTTGTCTGTAAGCGGATGCCGGGAGCAGACAAGCCCGTCAGGGCGCGTCAGCGGGTGTTGGCGGGTGTCGGGGCTGGCTTAACT ATGCGGCATCAGAGCAGATTGTACTGAGAGTGCACCATATGCGGTSTGAAATACCGCACAGATGCGTAAGGAGAAAATACCGCATCA GGCGCCATTCGCCATTCAGGCTGCGCAACTGTTGGGAAGGGCGATCGGTGCGGGCCTCTTCGCTATTACGCCAGCTGGCGAAAGGGG GATGTGCTGCAAGGCGATTAAGTTGGGTAACGCCAGGG SEQIDNO.:37 TTTTCCCAGTCACGACGTTGTAAAACGACGGCCAGTGAATTCGAGCTCACATACGATTTAGGTGACACTATAGGCCTGCACCAACAG TTAACACGGCGCGCCGCATGCGTCGACGGATCCTGAGAACTTCAGGCTCCTGGGCAACGTGCTGGTTATTGTGCTGTCTCATCATTT TGGCAAAGAATTCACTCCTCAGGTGCAGGGTGCCTATCAGAAGGTGGTGGCTGGTGTGGCCAATGCCCTGGCTCACAAATACCACTG AGATCTTTTTCCCTCTGCCAAAAATTATGGGGACATCATGAAGCCCCTTGAGCATCTGCTTCTGGCTAATAAAGGAAATTTTATTTT CATTGCAAAAAAAAAAAGCGGCCGCTAGAGTCGGCCGCAGCGGCCGAGCTTGGCGTAATCATGGTCATAGCTGTTTCCTGTGTGAAA TTGTTATCCGCTCACAATTCCACACAACATACGAGCCGGAAGCATAAAGTGTAAAGCCTGGGGTGCCTAATGAGTGAGCTAACTCAC ATTAATTGCGTTGCGCTCACTGCCCGCTTTCCAGTCGGGAAACCTGTCGTGCCAGCTGCATTAATGAATCGGCCAACGCGCGGGGAG AGGCGGTTTGCGTATTGGGCGCTCTTCCGCTTCCTCGCTCACTGACTCGCTGCGCTCGGTCGTTCGGCTGCGGCGAGCGGTATCAGC TCACTCAAAGGCGGTAATACGGTTATCCACAGAATCAGGGGATAACGCAGGAAAGAACATGTGAGCAAAAGGCCAGCAAAAGGCCAG GAACCGTAAAAAGGCCGCGTTGTCTGGCGTTTTTCCATAGCTCCGCCCCCCTGACGAGCATCACAAAAATCGACGCTCAAGTCAGAG GTGGCGAAACCCGACAGGACTATAAAGATACCAGGCGTTTCCCCCTGGAAGCTCCCTCTGTCGCTCTCCTGTTCCGACCCTGCCGCT TACCGGATACCTGTCCGCCTTTCTCCCTTCGGGAAGCGTGGCGCTTTCTCAAAGCTCACGCTGTAGGTATCTCAGTTCGGTGTAGGT CGTTCGCTCCAAGCTGGGCTGTGTGCACGAACCCCCCGTTCAGCCCGACCGCTGCGCCTTATCCGGTAACTATCGTCTTGAGTCCAA CCCGGTAAGACACGACTTATCGCCACTGGCAGCAGCCACTGGTAACAGGATTAGCAGAGCGAGGTATGTAGGCGGTGCTACAGAGTT CTTGAAGTGGTGGCCTAACTACGGCTACACTAGAAGAACAGTATTTGGTATCTGCGCTCTGCTGAAGCCAGTTACCTTCGGAAAAAG AGTTGGTAGCTCTTGATCCGGCAAACAAACCACCGCTGGTAGCGGTGGTTTTTTTGTTTGCAAGCAGCAGATTACGCGCAGAAAAAA AGGATCTCAAGAAGATCCTTTGATCTTTTCTACGGGGTCTGACGCTCAGTGGAACGAAAACTCACGTTAAGGGATTTTGGTCATGAG ATTATCAAAAAGGATCTTCACCTAGATCCTTTTAAATTAAAAATGAAGTTTTAAATCAATCTAAAGTATATATGAGTAAACTTGGTC TGACAGTTACCAATGCTTAATCAGTGAGGCACCTATCTCAGCGATCTGTCTATTTCGTTCATCCATAGTTGCCTGACTCCCCGTCGT GTAGATAACTACGATACGGGAGGGCTTACCATCTGGCCCCAGTGCTGCAATGATACCGCGAGACCCACGCTCACCGGCTCCAGATTT ATCAGCAATAAACCAGCCAGCCGGAAGGGCCGAGCGCAGAAGTGGTCCTGCAACTTTATCCGCCTCCATCCAGTCTATTAATTGTTG CCGGGAAGCTAGAGTAAGTAGTTCGCCAGTTAATAGTTTGCGCAACGTTGTTGCCATTGCTACAGGCATCGTGGTGTCACGCTCGTC GTTTGGTATGGCTTCATTCAGCTCCGGTTCCCAACGATCAAGGCGAGTTACATGATCCCCCATGTTGTGCAAAAAAGCGGTTAGCTC CTTCGGTCCTCCGATCGTTGTCAGAAGTAAGTTGGCCGCAGTGTTATCACTCATGGTTATGGCAGCACTGCATAATTCTCTTACTGT CATGCCATCCGTAAGATGCTTTTCTGTGACTGGTGAGTACTCAACCAAGTCATTCTGAGAATAGTGTATGCGGCGACCGAGTTGCTC TTGCCCGGCGTCAATACGGGATAATACCGCGCCACATAGCAGAACTTTAAAAGTGCTCATCATGGAAAACGTTCTTCGGGGCGAAAA ACTCTCAAGGATCTTACCGCTGTTGAGATCCAGTTCGATGTAACCCACTCGTGCACCCAACTGATCTTCAGCATGTTTTACTTTCAC CAGCGTTTCTGGGTGAGCAAAAACAGGAAGGCAAAATGCCGCAAAAAAGGGAATAAGGGCGACACGGAAATGTTGAATACTCATACT CTTCCTTTTTCAATATTATTGAAGCATTTATCAGGGTTATTGTCTCATGAGCGGATACATATTTGAATGTATTTAGAAAAATAAACA AATAGGGGTTCCGCGCACATTTCCCCGAAAAGTGCCACCTGACGTCTAAGAAACCATTATTATCATGACATTAACCTATAAAAATAG GCGTATCACGAGGCCCTTTCGTCTCGCGCGTTTCGGTGATGACGGTGAAAACCTCTGACACATGCAGCTCCCGGAGACGGTCACAGC TTGTCTGTAAGCGGATGCCGGGAGCAGACAAGCCCGTCAGGGCGCGTCAGCGGGTGTTGGCGGGTGTCGGGGCTGGCTTAACTATGC GGCATCAGAGCAGATTGTACTGAGAGTGCACCATATGCGGTGTGAAATACCGCACAGATGCGTAAGGAGAAAATACCGCATCAGGCG CCATTCGCCATTCAGGCTGCGCAACTGTTGGGAAGGGCGATCGGTGCGGGCCTCTTCGCTATTACGCCAGCTGGCGAAAGGGGGATG TGCTGCAAGGCGATTAAGTTGGGTAACGCCAGGG SEQIDNO.:38 TTTTCCCAGTCACGACGTTGTAAAACGACGGCCAGTGAATTCTAATACGACTCACTATAGGGAGATGGAGAAAAAAATCACTGGACG CGTGGCGCGCCATTAATTAATGCGGCCGCTAGCTCGAGTGATAATAAGCGGATGAATGGCTGCAGGCATGCAAGCTTGGCGTAATCA TGGTCATAGCTGTTTCCTGTGTGAAATTGTTATCCGCTCACAATTCCACACAACATACGAGCCGGAAGCATAAAGTGTAAAGCCTGG GGTGCCTAATGAGTGAGCTAACTCACATTAATTGCGTTGCGCTCACTGCCCGCTTTCCAGTCGGGAAACCTGTCGTGCCAGCTGCAT TAATGAATCGGCCAACGCGCGGGGAGAGGCGGTTTGCGTATTGGGCGCTCTTCCGCTTCCTCGCTCACTGACTCGCTGCGCTCGGTC GTTCGGCTGCGGCGAGCGGTATCAGCTCACTCAAAGGCGGTAATACGGTTATCCACAGAATCAGGGGATAACGCAGGAAAGAACATG TGAGCAAAAGGCCAGCAAAAGGCCAGGAACCGTAAAAAGGCCGCGTTGCTGGCGTTTTTCCATAGGCTCCGCCCCCCTGACGAGCAT CACAAAAATCGACGCTCAAGTCAGAGGTGGCGAAACCCGACAGGACTATAAAGATACCAGGCGTTTCCCCCTGGAAGCTCCCTCGTG CGCTCTCCTGTTCCGACCCTGCCGCTTACCGGATACCTGTCCGCCTTTCTCCCTTCGGGAAGCGTGGCGCTTTCTCAATGCTCACGC TGTAGGTATCTCAGTTCGGTGTAGGTCGTTCGCTCCAAGCTGGGCTGTGTGCACGAACCCCCCGTTCAGCCCGACCGCTGCGCCTTA TCCGGTAACTATCGTCTTGAGTCCAACCCGGTAAGACACGACTTATCGCCACTGGCAGCAGCCACTGGTAACAGGATTAGCAGAGCG AGGTATGTAGGCGGTGCTACAGAGTTCTTGAAGTGGTGGCCTAACTACGGCTACACTAGAAGGACAGTATTTGGTATCTGCGCTCTG CTGAAGCCAGTTACCTTCGGAAAAAGAGTTGGTAGCTCTTGATCCGGCAAACAAACCACCGCTGGTAGCGGTGGTTTTTTTGTTTGC AAGCAGCAGATTACGCGCAGAAAAAAAGGATCTCAAGAAGATCCTTTGATCTTTTCTACGGGGTCTGACGCTCAGTGGAACGAAAAC TCACGTTAAGGGATTTTGGTCATGAGATTATCAAAAAGGATCTTCACCTAGATCCTTTTAAATTAAAAATGAAGTTTTAAATCAATC TAAAGTATATATGAGTAAACTTGGTCTGACAGTTACCAATGCTTAATCAGTGAGGCACCTATCTCAGCGATCTGTCTATTTCGTTCA TCCATAGTTGCCTGACTCCCCGTCGTGTAGATAACTACGATACGGGAGGGCTTACCATCTGGCCCCAGTGCTGCAATGATACCGCGA GACCCACGCTCACCGGCTCCAGATTTATCAGCAATAAACCAGCCAGCCGGAAGGGCCGAGCGCAGAAGTGGTCCTGCAACTTTATCC GCCTCCATCCAGTCTATTAATTGTTGCCGGGAAGCTAGAGTAAGTAGTTCGCCAGTTAATAGTTTGCGCAACGTTGTTGCCATTGCT ACAGGCATCGTGGTGTCACGCTCGTCGTTTGGTATGGCTTCATTCAGCTCCGGTTCCCAACGATCAAGGCGAGTTACATGATCCCCC ATGTTGTGCAAAAAAGCGGTTAGCTCCTTCGGTCCTCCGATCGTTGTCAGAAGTAAGTTGGCCGCAGTGTTATCACTCATGGTTATG GCAGCACTGCATAATTCTCTTACTGTCATGCCATCCGTAAGATGCTTTTCTGTGACTGGTGAGTACTCAACCAAGTCATTCTGAGAA TAGTGTATGCGGCGACCGAGTTGCTCTTGCCCGGCGTCAATACGGGATAATACCGCGCCACATAGCAGAACTTTAAAAGTGCTCATC ATTGGAAAACGTTCTTCGGGGCGAAAACTCTCAAGGATCTTACCGCTGTTGAGATCCAGTTCGATGTAACCCACTCGTGCACCCAAC TGATCTTCAGCATCTTTTACTTTCACCAGCGTTTCTGGGTGAGCAAAAACAGGAAGGCAAAATGCCGCAAAAAAGGGAATAAGGGCG ACACGGAAATGTTGAATACTCATACTCTTCCTTTTTCAATATTATTGAAGCATTTATCAGGGTTATTGTCTCATGAGCGGATACATA TTTGAATGTATTTAGAAAAATAAACAAATAGGGGTTCCGCGCACATTTCCCCGAAAAGTGCCACCTGACGTCTAAGAAACCATTATT ATCATGACATTAACCTATAAAAATAGGCGTATCACGAGGCCCTTTCGTCTCGCGCGTTTCGGTGATGACGGTGAAAACCTCTGACAC ATGCAGCTCCCGGAGACGGTCACAGCTTGTCTGTAAGCGGATGCCGGGAGCAGACAAGCCCGTCAGGGCGCGTCAGCGGGTGTTGGC GGGTGTCGGGGCTGGCTTAACTATGCGGCATCAGAGCAGATTGTACTGAGAGTGCACCATATGCGGTGTGAAATACCGCACAGATGC GTAAGGAGAAAATACCGCATCAGGCGCCATTCGCCATTCAGGCTGCGCAACTGTTGGGAAGGGCGATCGGTGCGGGCCTCTTCGCTA TTACGCCAGCTGGCGAAAGGGGGATGTGCTGCAAGGCGATTAAGTTGGGTAACGCCAGGG SEQIDNO.:39 TTTTCCCAGTCACGACGTTGTAAAACGACGGCCAGTGAATTCAATTAACCCTCACTAAAGGGAGACTTGTTCCAAATGTGTTAGGcg CGCCGCATGCGTCGACGGATCCTGAGAACTTCAGGCTCCTGGGCAACGTGCTGGTTATTGTGCTGTCTCATCATTTTGGCAAAGAAT TCACTCCTCAGGTGCAGGCTGCCTATCAGAAGGTGGTGGCTGGTGTGGCCAATGCCCTGGCTCACAAATACCACTGAGATCTTTTTC CCTCTGCCAAAAATTATGGGGACATCATGAAGCCCCTTGAGCATCTGACTTCTGGCTAATAAAGGAAATTTATTTTCATTGCAAAAA AAAAAAGCGGCCGCTCTTCTATAGTGTCACCTAAATGGCCCAGCGGCCGAGCTTGGCGTAATCATGGTCATAGCTGTTTCCTGTGTG AAATTGTTATCCGCTCACAATTCCACACAACATACGAGCCGGAAGCATAAAGTGTAAAGCCTGGGGTGCCTAATGAGTGAGCTAACT CACATTAATTGCGTTGCGCTCACTGCCCGCTTTCCAGTCGGGAAACCTGTCGTGCCAGCTGCATTAATGAATCGGCCAACGCGCGGG GAGAGGCGGTTTGCGTATTGGGCGCTCTTCCGCTTCCTCGCTCACTGACTCGCTGCGCTCGGTCGTTCGGCTGCGGCGAGCGGTATC AGCTCACTCAAAGGCGGTAATACGGTTATCCACAGAATCAGGGGATAACGCAGGAAAGAACATGTGAGCAAAAGGCCAGCAAAAGGC CAGGAACCGTAAAAAGGCCGCGTTGCTGGCGTTTTTCCATAGGCTCCGCCCCCCTGACGAGCATCACAAAAATCGACGCTCAAGTCA GAGGTGGCGAAACCCGACAGGACTATAAAGATACCAGGCGTTTCCCCCTGGAAGCTCCCTCGTGCGCTCTCCTGTTCCGACCCTGCC GCTTACCGGATACCTGTCCGCCTTTCTCCCTTCGGGAAGCGTGGCGCTTTCTCAAAGCTCACGCTGTAGGTATCTCAGTTCGGTGTA GGTCGTTCGCTCCAAGCTGGGCTGTGTGCACGAACCCCCCGTTCAGCCCGACCGCTGCGCCTTATCCGGTAACTATCGTCTTGAGTC CAACCCGGTAAGACACGACTTATCGCCACTGGCAGCAGCCACTGGTAACAGGATTAGCAGAGCGAGGTATGTAGGCGGTGCTACAGA GTTCTTGAAGTGGTGGCCTAACTACGGCTACACTAGAAGAACAGTATTTGGTATCTGCGCTCTGCTGAAGCCAGTTACCTTCGGAAA AAGAGTTGGTAGCTCTTGATCCGGCAAACAAACCACCGCTGGTAGCGGTGGTTTTTTTGTTTGCAAGCAGCAGATTACGCGCAGAAA AAAAGGATCTCAAGAAGATCCTTTGATCTTTTCTACGGGGTCTGACGCTCAGTGGAACGAAAACTCACGTTAAGGGATTTTGGTCAT GAGATTATCAAAAAGGATCTTCACCTAGATCCTTTTAAATTAAAAATGAAGTTTTAAATCAATCTAAAGTATATATGAGTAAACTTG GTCTGACAGTTACCAATGCTTAATCAGTGAGGCACCTATCTCAGCGATCTGTCTATTTCGTTCATCCATAGTTGCCTGACTCCCCGT CGTGTAGATAACTACGATACGGGAGGGCTTACCATCTGGCCCCAGTGCTGCAATGATACCGCGAGACCCACGCTCACCGGCTCCAGA TTTATCAGCAATAAACCAGCCAGCCGGAAGGGCCGAGCGCAGAAGTGGTCCTGCAACTTTATCCGCCTCCATCCAGTCTATTAATTG TTGCCGGGAAGCTAGAGTAAGTAGTTCGCCAGTTAATAGTTTGCGCAACGTTGTTGCCATTGCTACAGGCATCGTGGTGTCACGCTC GTCGTTTGGTATGGCTTCATTCAGCTCCGGTTCCCAACGATCAAGGCGAGTTACATGATCCCCCATGTTGTGCAAAAAAGCGGTTAG CTCCTTCGGTCCTCCGATCGTTGTCAGAAGTAAGTTGGCCGCAGTGTTATCACTCATGGTTATGGCAGCACTGCATAATTCTCTTAC TGTCATGCCATCCGTAAGATGCTTTTCTGTGACTGGTGAGTACTCAACCAAGTCATTCTGAGAATAGTGTATGCGGCGACCGAGTTG CTCTTGCCCGGCGTCAATACGGGATAATACCGCGCCACATAGCAGAACTTTAAAAGTGCTCATCATTGGAAAACGTTCTTCGGGGCG AAAACTCTCAAGGATCTTACCGCTGTTGAGATCCAGTTCGATGTAACCCACTCGTGCACCCAACTGATCTTCAGCATCTTTTACTTT CACCAGCGTTTCTGGGTGAGCAAAAACAGGAAGGCAAAATGCCGCAAAAAAGGGAATAAGGGCGACACGGAAATGTTGAATACTCAT ACTCTTCCTTTTTCAATATTATTGAAGCATTTATCAGGGTTATTGTCTCATGAGCGGATACATATTTGAATGTATTTAGAAAAATAA ACAAATAGGGGTTCCGCGCACATTTCCCCGAAAAGTGCCACCTGACGTCTAAGAAACCATTATTATCATGACATTAACCTATAAAAA TAGGCGTATCACGAGGCCCTTTCGTCTCGCGCGTTTCGGTGATGACGGTGAAAACCTCTGACACATGCAGCTCCCGGAGACGGTCAC AGCTTGTCTGTAAGCGGATGCCGGGAGCAGACAAGCCCGTCAGGGCGCGTCAGCGGGTGTTGGCGGGTGTCGGGGCTGGCTTAACTA TGCGGCATCAGAGCAGATTGTACTGAGAGTGCACCATATGCGGTGTGAAATACCGCACAGATGCGTAAGGAGAAAATACCGCATCAG GCGCCATTCGCCATTCAGGCTGCGCAACTGTTGGGAAGGGCGATCGGTGCGGGCCTCTTCGCTATTACGCCAGCTGGCGAAAGGGGG ATGTGCTGCAAGGCGATTAAGTTGGGTAACGCCAGGG SEQIDNO.:40 AATTCTAATACGACTCACTATAGGGAGACGAGAGCACCTGGATAGGTT SEQIDNO.:41 GCCTGCACCAACAGTTAACA SEQIDNO.:42 CAGGCCCAGGAGTCCAATT SEQIDNO.:43 TCCCGTCTTTGGGTCAAAA SEQIDNO.:44 GCGCCGCGGATCGTCAACA SEQIDNO.:45 ACACGTGCACGGCGGCCAA SEQIDNO.:46 TCGCGCGTTTCGGTGATGACGGTGAAAACCTCTGACACATGCAGCTCCCGGAGACGGTCACAGCTTGTCTGTAAGCGGATGCCGGGA GCAGACAAGCCCGTCAGGGCGCGTCAGCGGGTGTTGGCGGGTGTCGGGGCTGGCTTAACTATGCGGCATCAGAGCAGATTGTACTGA GAGTGCACCATATGCGGTGTGAAATACCGCGCAGATGCGTAAGGAGAAAATACCGCATCAGGCGCCATTCGCCATTCAGGCTGCGCA ACTGTTGGGAAGGGCGATCGGTGCGGGCCTCTTCGCTATTACGCCAGCTGGCGAAAGGGGGATGTGCTGCAAGGCGATTAAGTTGGG TAACGCCAGGGTTTTCCCAGTCACGACGTTGTAAAACGACGGCCAGTGCCAAGCTTTTCCAAAAAACTACCGTTGTTATAGGTGTCT CTTGAACACCTATAACAACGGTAGTGGATCCCGCGTCCTTTCCACAAGATATATAAACCCAAGAAATCGAAATACTTTCAAGTTACG GTAAGCATATGATAGTCCATTTTAAAACATAATTTTAAAACTGCAAACTACCCAAGAAATTATTACTTTCTACGTCACGTATTTTGT ACTAATATCTTTGTGTTTACAGTCAAATTAATTCTAATTATCTCTCTAACAGCCTTGTATCGTATATGCAAATATGAAGGAATCATG GGAAATAGGCCCTCTTCCTGCCCGACCTTGGCGCGCGCTCGGCGCGCGGTCACGCTCCGTCACGTGGTGCGTTTTGCCTGCGCGTCT TTCCACTGGGGAATTCATGCTTCTCCTCCCTTTAGTGAGGGTAATTCTCTCTCTCTCCCTATAGTGAGTCGTATTAATTCCTTCTCT TCTATAGTGTCACCTAAATCGTTGCAATTCGTAATCATGTCATAGCTGTTTCCTGTGTGAAATTGTTATCCGCTCACAATTCCACAC AACATACGAGCCGGAAGCATAAAGTGTAAAGCCTGGGGTGCCTAATGAGTGAGCTAACTCACATTAATTGCGTTGCGCTCACTGCCC GCTTTCCAGTCGGGAAACCTGTCGTTCCAGCTGCATTAATGAATCGGCCAACGCGCGGGGAGAGGCGGTTTGCGTATTGGGCGCTCT TCCGCTTCCTCGCTCACTGACTCGCTGCGCTCGGTCGTTCGGCTGCGGCGAGCGGTATCAGCTCACTCAAAGGCGGTAATACGGTTA TCCACAGAATCAGGGGATAACGCAGGAAAGAACATGTGAGCAAAAGGCCAGCAAAAGGCCAGGAACCGTAAAAAGGCCGCGTTGCTG GCGTTTTTCCATAGGCTCCGCCCCCCTGACGAGCATCACAAAAATCGACGCTCAAGTCAGAGGTGGCGAAACCCGACAGGACTATAA AGATACCAGGCGTTTCCCCCTGGAAGCTCCCTCGTGCGCTCTCCTGTTCCGACCCTGCCGCTTACCGGATACCTGTCCGCCTTTCTC CCTTCGGGAAGCGTGGCGCTTTCTCATAGCTCACGCTGTAGGTATCTCAGTTCGGTGTAGGTCGTTCGCTCCAAGCTGGGCTGTGTG CACGAACCCCCCGTTCAGCCCGACCGCTGCGCCTTATCCGGTAACTATCGTCTTGAGTCCAACCCGGTAAGACACGACTTATCGCCA CTGGCAGCAGCCACTGGTAACAGGATTAGCAGAGCGAGGTATGTAGGCGGTGCTACAGAGTTCTTGAAGTGGTGGCCTAACTACGGC TACACTAGAAGAACAGTATTTGGTATCTGCGCTCTGCTGAAGCCAGTTACCTTCGGAAAAAGAGTTGGTAGCTCTTGATCCGGCAAA AAAACCACCGCTGGTAGCGGTGGTTTTTTTGTTTGCAAGCAGCAGATTACGCGCAGAAAAAAAGGATCTCAAGAAGATCCTTTGATC TTTTCTACGGGGTCTGACGCTCAGTGGAACGAAAACTCACGTTAAGGGATTTTGGTCATGAGATTATCAAAAAGGATCTTCACCTAG ATCCTTTTAAATTAAAAATGAAGTTTTAAATCAATCTAAAGTATATATGAGTAAACTTGGTCTGACAGTTACCAATGCTTAATCAGT GAGGCACCTATCTCAGCGATCTGTCTATTTCGTTCATCCATAGTTGCCTGACTCCCCGTCGTGTAGATAACTACGATACGGGAGGGC TTACCATCTGGCCCCAGTGCTGCAATGATACCGCGAGACCCACGCTCACCGGCTCCAGATTTATCAGCAATAAACCAGCCAGCCGGA AGGGCCGAGCGCAGAAGTGGTCCTGCAACTTTATCCGCCTCCATCCAGTCTATTAATTGTTGCCGGGAAGCTAGAGTAAGTAGTTCG CCAGTTAATAGTTTGCGCAACGTTGTTGCCATTGCTACAGGCATCGTGGTGTCACGCTCGTCGTTTGGTATGGCTTCATTCAGCTCC GGTTCCCAACGATCAAGGCGAGTTACATGATCCCCCATGTTGTGCAAAAAAGCGGTTAGCTCCTTCGGTCCTCCGATCGTTGTCAGA AGTAAGTTGGCCGCAGTGTTATCACTCATGGTTATGGCAGCACTGCATAATTCTCTTACTGTCATGCCATCCGTAAGATGCTTTTCT GTGACTGGTGAGTACTCAACCAAGTCATTCTGAGAATAGTGTATGCGGCGACCGAGTTGCTCTTGCCCGGCGTCAATACGGGATAAT ACCGCGCCACATAGCAGAACTTTAAAAGTGCTCATCATTGGAAAACGTTCTTCGGGGCGAAAACTCTCAAGGATCTTACCGCTGTTG AGATCCAGTTCGATGTAACCCACTCGTGCACCCAACTGATCTTCAGCATCTTTTACTTTCACCAGCGTTTCTGGGTGAGCAAAAACA GGAAGGCAAAATGCCGCAAAAAAGGGAATAAGGGCGACACGGAAATGTTGAATACTCATACTCTTCCTTTTTCAATATTATTGAAGC ATTTATCAGGGTTATTGTCTCATGAGCGGATACATATTTGAATGTATTTAGAAAAATAAACAAATAGGGGTTCCGCGCACATTTCCC CGAAAAGTGCCACCTATTGGTGTGGAAAGTCCCCAGGCTCCCCAGCAGGCAGAAGTATGCAAAGCATGCATCTCAATTAGTCAGCAA CGAGGTGTGGAAAGTCCCCAGGCTCCCCAGCAGGCAGAAGTATGCAAAGCATGCATCTCAATTAGTCAGCAACCATAGTCCCGCCCC TAACTCCGCCCATCCCGCCCCTAACTCCGCCCAGTTCCGCCCATTCTCCGCCCCATGGCTGACTAATTTTTTTTATTTATGCAGAGG CCGAGGCCGCCTCGGCCTCTGAGCTATTCCAGAAGTAGTGAGGAGGCTTTTTTGGAGGCCTAGGCTTTTGCAAAAAGCTAGCTTGCA TGCCTGCAGGTCGGCCGCCACGACCGGTGCCGCCACCATCCCCTGACCCACGCCCCTGACCCCTCACAAGGAGACGACCTTCCATGA CCGAGTACAAGCCCACGGTGCGCCTCGCCACCCGCGACGACGTCCCCCGGGCCGTACGCACCCTCGCCGCCGCGTTCGCCGACTACC CCGCCACGCGCCACACCGTCGACCCGGACCGCCACATCGAGCGGGTCACCGAGCTGCAAGAACTCTTCCTCACGCGCGTCGGGCTCG ACATCGGCAAGGTGTGGGTCGCGGACGACGGCGCCGCGGTGGCGGTCTGGACCACGCCGGAGAGCGTCGAAGCGGGGGCGGTGTTCG CCGAGATCGGCCCGCGCATGGCCGAGTTGAGCGGTTCCCGGCTGGCCGCGCAGCAACAGATGGAAGGCCTCCTGGCGCCGCACCGGC CCAAGGAGCCCGCGTGGTTCCTGGCCACCGTCGGCGTCTCGCCCGACCACCAGGGCAAGGGTCTGGGCAGCGCCGTCGTGCTCCCCG GAGTGGAGGCGGCCGAGCGCGCCGGGGTGCCCGCCTTCCTGGAGACCTCCGCGCCCCGCAACCTCCCCTTCTACGAGCGGCTCGGCT TCACCGTCACCGCCGACGTCGAGGTGCCCGAAGGACCGCGCACCTGGTGCATGACCCGCAAGCCCGGTGCCTGACGCCCGCCCCACG ACCCGCAGCGCCCGACCGAAAGGAGCGCACGACCCCATGGCTCCGACCGAAGCCACCCGGGGCGGCCCCGCCGACCCCGCACCCGCC CCCGAGGCCCACCGACTCTAGAGGATCATAATCAGCCATACCACATTTGTAGAGGTTTTACTTGCTTTAAAAAACCTCCCACACCTC CCCCTGAACCTGAAACATAAAATGAATGCAATTGTTGTTGTTAACTTGTTTATTGCAGCTTATAATGGTTACAAATAAAGCAATAGC ATCACAAATTTCACAAATAAAGCATTTTTTTCACTGCAATCTAAGAAACCATTATTATCATGACATTAACCTATAAAAATAGGCGTA TCACGAGGCCCTTTCGTC SEQIDNO.:47 TAGTTATTAATAGTAATCAATTACGGGGTCATTAGTTCATAGCCCATATATGGAGTTCCGCGTTACATAACTTACGGTAAATGGCCC GCCTGGCTGACCGCCCAACGACCCCCGCCCATTGACGTCAATAATGACGTATGTTCCCATAGTAACGCCAATAGGGACTTTCCATTG ACGTCAATGGGTGGAGTATTTACGGTAAACTGCCCACTTGGCAGTACATCAAGTGTATCATATGCCAAGTACGCCCCCTATTGACGT CAATGACGGTAAATGGCCCCGCCTGGCATTATGCCCAGTACATGACCTTATGGGACTTTCCTACTTGCAGTACATCTACGTATTAGT CATCGCTATTACCATGGTGATGCGGTTTTGGCAGTACATCAATGGGCGTGGATAGCGGTTTGACTCACGGGGATTTCCAAGTCTCCA CCCCATTGACGTCAATGGGAGTTTGTTTTGGCACCAAAATCAACGGGACTTTCCAAAATGTCGTAACAACTCCGCCCCATTGACGCA AATGGGCGGTAGGCGTGTACGGTGGGAGGTCTATATAAGCAGAGCTGGTTTAGTGAACCGTCAGATCCGCTAGCGCTACCGGACTCA GATCTCGAGCTCAAGCTTCGAATTCTGCAGTCGACGGTACCGCGGGCCCGGGATCCACCGGGGCCGCGACTCTAGATCATAATCAGC CATACCACATTTGTAGAGGTTTTACTTGCTTTAAAAAACCTCCCACACCTCCCCCTGAACCTGAAACATAAAATGAATGCAATTGTT GTTGTTAACTTGTTTATTGCAGCTTATAATGGTTACAAATAAAGCAATAGCATCACAAATTTCACAAATAAAGCATTTTTTTCACTG CATTCTAGTTGTGGTTTGTCCAAACTCATCAATGTATCTTAAGGCGTAAATTGTAAGCGTTAATATTTTGTTAAAATTCGCGTTAAA TTTTTGTTAAATCAGCTCATTTTTTAACCAATAGGCCGAAATCGGCAAAATCCCTTATAAATCAAAAGAATAGACCGAGATAGGGTT GAGTGTTGTTCCAGTTTGGAACAAGAGTCCACTATTAAAGAACGTGGACTCCAACGTCAAAGGGCGAAAAACCGTCTATCAGGGCGA TGGCCCACTACGTGAACCATCACCCTAATCAAGTTTTTTGGGGTCGAGGTGCCGTAAAGCACTAAATCGGAACCCTAAAGGGAGCCC CCGATTTAGAGCTTGACGGGGAAAGCCGGCGAACGTGGCGAGAAAGGAAGGGAAGAAAGCGAAAGGAGCGGGCGCTAGGGCGCTGGC AAGTGTAGCGGTCACGCTGCGCGTAACCACCACACCCGCCGCGCTTAATGCGCCGCTACAGGGCGCGTCAGGTGGCACTTTTCGGGG AAATGTGCGCGGAACCCCTATTTGTTTATTTTTCTAAATACATTCAAATATGTATCCGCTCATGAGACAATAACCCTGATAAATGCT TCAATAATATTGAAAAAGGAAGAGTCCTGAGGCGGAAAGAACCAGCTGTGGAATGTGTGTCAGTTAGGGTGTGGAAAGTCCCCAGGC TCCCCAGCAGGCAGAAGTATGCAAAGCATGCATCTCAATTAGTCAGCAACCAGGTGTGGAAAGTCCCCAGGCTCCCCAGCAGGCAGA AGTATGCAAAGCATGCATCTCAATTAGTCAGCAACCATAGTCCCGCCCCTAACTCCGCCCATCCCGCCCCTAACTCCGCCCAGTTCC GCCCATTCTCCGCCCCATGGCTGACTAATTTTTTTTATTTATGCAGAGGCCGAGGCCGCCTCGGCCTCTGAGCTATTCCAGAAGTAG TGAGGAGGCTTTTTTGGAGGCCTAGGCTTTTGCAAAGATCGATCAAGAGACAGGATGAGGATCGTTTCGCATGATTGAACAAGATGG ATTGCACGCAGGTTCTCCGGCCGCTTGGGTGGAGAGGCTATTCGGCTATGACTGGGCACAACAGACAATCGGCTGCTCTGATGCCGC CGTGTTCCGGCTGTCAGCGCAGGGGCGCCCGGTTCTTTTTGTCAAGACCGACCTGTCCGGTGCCCTGAATGAACTGCAAGACGAGGC AGCGCGGCTATCGTGGCTGGCCACGACGGGCGTTCCTTGCGCAGCTGTGCTCGACGTTGTCACTGAAGCGGGAAGGGACTGGCTGCT ATTGGGCGAAGTGCCGGGGCAGGATCTCCGTCASTCTCACCTTGCTCCTGCCGAGAAAGTATCCATCATGGCTGATGCAATGCGGCG GCTGCATACGCTTGATCCGGCTACCTGCCCATTCGACCACCAAGCGAAACATCGCATCGAGCGAGCACGTACTCGGATGGAAGCCGG TCTTGTCGATCAGGATGATCTGGACGAAGAGCATCAGGGGCTCGCGCCAGCCGAACTGTTCGCCAGGCTCAAGGCGAGCATGCCCGA CGGCGAGGATCTCGTCGTGACCCATGGCGATGCCTGCTTGCCGAATATCATGGTGGAAAATGGCCGCTTTTCTGGATTCATCGACTG TGGCCGGCTGGGTGTGGCGGACCGCTATCAGGACATAGCGTTGGCTACCCGTGATATTGCTGAAGAGCTTGGCGGCGAATGGGCTGA CCGTCTTCCTCGTGCTTTACGTATCGCCGCTCCCGATTCGCAGCGCATCGCCTTCTATCGCCTTCTTGACGAGTTCTTCTGAGCGGG ACTCTGGGGTTCGAAATGACCGACCAAGCGACGCCCAACCTGCCATCACGAGATTTCGATTCCACCGCCGCCTTCTATGAAAGGTTG GGCTTCGGAATCGTTTTCCGGGACGCCGGCTGGATGATCCTCCAGCGCGGGGATCTCATGCTGGAGTTCTTCGCCCACCCTAGGGGG AGGCTAACTGAAACACGGAAGGAGACAATACCGGAAGGAACCCGCGCTATGACGGCAATAAAAAGACAGAATAAAACGCACGGTGTT GGGTCGTTTGTTCATAAACGCGGGGTTCGGTCCCAGGGCTGGCACTCTGTCGATACCCCACCGAGACCCCATTGGGGCCAATACGCC CGCGTTTCTTCCTTTTCCCCACCCCACCCCCCAAGTTCGGGTGAAGGCCCAGGGCTCGCAGCCAACGTCGGGGCGGCAGGCCCTGCC ATAGCCTCAGGTTACTCATATATACTTTAGATTGATTTAAAACTTCATTTTTAATTTAAAAGGATCTAGGTGAAGATCCTTTTTGAT AATCTCATGACCAAAATCCCTTAACGTGAGTTTTCGTTCCACTGAGCGTCAGACCCCGTAGAAAAGATCAAAGGATCTTCTTGAGAT CCTTTTTTTCTGCGCGTAATCTGCTGCTTGCAAACAAAAAAACCACCGCTACCAGCGGTGGTTTGTTTGCCGGATCAAGAGCTACCA ACTCTTTTTCCGAAGGTAACTGGCTTCAGCAGAGCGCAGATACCAAATACTGTCCTTCTAGTGTAGCCGTAGTTAGGCCACCACTTC AAGAACTCTGTAGCACCGCCTACATACCTCGCTCTGCTAATCCTGTTACCAGTGGCTGCTGCCAGTGGCGATAAGTCGTGTCTTACC GGGTTGGACTCAAGACGATAGTTACCGGATAAGGCGCAGCGGTCGGGCTGAACGGGGGGTTCGTGCACACAGCCCAGCTTGGAGCGA ACGACCTACACCGAACTGAGATACCTACAGCGTGAGCTATGAGAAAGCGCCACGCTTCCCGAAGGGAGAAAGGCGGACAGGTATCCG GTAAGCGGCAGGGTCGGAACAGGAGAGCGCACGAGGGAGCTTCCAGGGGGAAACGCCTGGTATCTTTATAGTCCTGTCGGGTTTCGC CACCTCTGACTTGAGCGTCGATTTTTGTGATGCTCGTCAGGGGGGCGGAGCCTATGGAAAAACGCCAGCAACGCGGCCTTTTTACGG TTCCTGGCCTTTTGCTGGCCTTTTGCTCACATGTTCTTTCCTGCGTTATCCCCTGATTCTGTGGATAACCGTATTACCGCCATGCAT SEQIDNO.:83 Identicalto ATGGAAAAGTCCATCTGGCTGCTGGCCTGCTTGGCGTGGGTTCTCCCGACAGGCTCATTTGTGAGAACTAAAATAGATACTACGGAG SEQIDNO.:48 AACTTGCTCAACACAGAGGTGCACAGCTCGCCAGCGCAGCGCTGGTCCATGCAGGTGCCACCCGAGGTGAGCGCGGAGGCAGGCGAC MEKSIWLLACLAWV GCGGCAGTGCTGCCCTGCACCTTCACGCACCCGCACCGCCACTACGACGGGCCGCTGACGGCCATCTGGCGCGCGGGCGAGCCCTAT LPTGSFVRTKIDTT GCGGGCCCGCAGGTGTTCCGCTGCGCTGCGGCGCGGGGCAGCGAGCTCTGCCAGACGGCGCTGAGCCTGCACGGCCGCTTCCGGCTG ENLLNTEVHSSPAQ CTGGGCAACCCGCGCCGCAACGACCTCTCGCTGCGCGTCGAGCGCCTCGCCCTGGCTGACGACCGCCGCTACTTCTGCCGCGTCGAG RWSMQVPPSVSAEA TTCGCCGGCGACGTCCATGACCGCTACGAGAGCCGCCACGGCGTCCGGCTGCACGTGACAGCCGCGCCGCGGATCGTCAACATCTCG GDAAVLPCTFTHPH GTGCTGCCCAGTCCGGCTCACGCCTTCCGCGCGCTCTGCACTGCCGAAGGGGAGCCGCCGCCCGCCCTCGCCTGGTCCGGCCCGGCC RHYDGPLTAIWRAG CTGGGCAACAGCTTGGCAGCCGTGCGGAGCCCGCGTGAGGGTCACGGCCACCTAGTGACCGCCGAACTGCCCGCACTGACCCATGAC EPYAGPQVFRCAAA GGCCGCTACACGTGTACGGCCGCCAACAGCCTGGGCCGCTCCGAGGCCAGCGTCTACCTGTTCCGCTTCCATGGCGCCAGCGGGGCC RGSELCQTALSLHG TCGACGGTCGCCCTCCTGCTCGGCGCTCTCGGCTTCAAGGCGCTGCTGCTGCTCGGGGTCCTGGCCGCCCGCGCTGCCCGCCGCCGC RFRLLGNPRRNDLS CCAGAGCATCTGGACACCCCGGACACCCCACCACGGTCCCAGGCCCAGGAGTCCAATTATGAAAATTTGAGCCAGATGAACCCCCGG LRVERLALADDRRY AGCCCACCAGCCACCATGTGCTCACCGTGA FCRVEFAGDVHDRY ESRHGVRLHVTAAP RIVNISVLPSPAHA FRALCTAEGEPPPA LAWSGPALGNSLAA VRSPREGHGHLVTA ELPALTHDGRYTCT AANSLGRSEASVYL FRFHGASGASTVAL LLGALGFKALLLLG VLAARAARRRPEHL DTPDTPPRSQAQES NYENLSQMNPRSPP ATMCSP SEQIDNO.:84 Identicalto ATGCCGGCGCTGCTGCCTGTGGCCTCCCGCCTTTTGTTGCTACCCCGAGTCTTGCTGACCATGGCCTCTGGAAGCCCTCCGACCCAG SEQIDNO.:49 CCCTCGCCGGCCTCGGATTCCGGCTCTGGCTACGTTCCGGGCTCGGTCTCTGCAGCCTTTGTTACTTGCCCCAACGAGAAGGTCGCC MIGSGLAGSGGAGG AAGGAGATCGCCAGGGCCGTGGTGGAGAAGCGCCTAGCAGCCTGCGTCAACCTCATCCCTCAGATTACATCCATCTATGAGTGGAAA PSSTVTWCALFSNH GGGAAGATCGAGGAAGACAGTGAGGTGCTGATGATGATTAAAACCCAAAGTTCCTTGGTCCCAGCTTTGACAGATTTTGTTCGTTCT VAATQASLLLSFVW GTGCACCCTTACGAAGTGGCCGAGGTAATTGCATTGCCTGTGGAACAGGGGAACTTTCCGTACCTGCAGTGGGTGCGCCAGGTCACA MPALLPVASRLLLL GAGTCAGTTTCTGACTCTATCACAGTCCTGCCATGA PRVLLTMASGSPPT QPSPASDSGSGYVP GSVSAAFVTCPNEK VAKEIARAVVEKRL AACVNLIPQITSIY EWKGKIEEDSEVLM MIKTQSSLVPALTD FVRSVHPYEVAEVI ALPVEQGNFPYLQW VRQVTESVSDSITV LP SEQIDNO.85: CATGTGCCAACATGCAGGTTTGCTCATATNTATACTTTTGCCATGTTGGTGTGCTGCACCCATTAACTCGTCATTTAGCATTAGGTA TATTTCTTAATGCTATCCCTCCCCCCTCCCTCCACCCCACAACAGTCCCCGCTGGTGTGTGATGTTCCCAAATTTTTTTTTTCTCAT CANCATTATCNCTAAACAACATTGAATGAAACAACATTGAGGATCTGCTATATTTGAAAATAAAAATATAACTAAAAATAATACAAA TTTTAAAAATACAGTGTAACAACTATTTACATAGAATTTACATTGTATTAGGTATTGNANGTAATCTAGAGTTGATTTAAAGGAGGG GNGTCCAAACTTTTGGCTTCCCTGGGCCACACTGGAANAANAATTGTCTTGGGCTACCCATAAAATACACTAACAATAGCTGATAAC GA SEQIDNO.86 GCTGATTTACAGAGTTTCCTCCTTATAATATTCAAATGTCCATTTTCAATAACAGCAACAAACTACAAAGAAACAGGAAAGTATGGT CTACTCACAGA
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