Thermostable pectinase
09650625 ยท 2017-05-16
Assignee
Inventors
- Rey-Ting Guo (Taipei, TW)
- Ya-Shan Cheng (Taipei, TW)
- Jian-Wen Huang (Taipei, TW)
- Tzu-Hui Wu (Taipei, TW)
- Hui-Lin Lai (Taipei, TW)
- Cheng-Yen Lin (Taipei, TW)
- Tsung-Yu Ko (Taipei, TW)
Cpc classification
International classification
Abstract
A pectinase having improved thermostability is disclosed. The pectinase has a modified amino acid sequence of SEQ ID NO: 2, wherein the modification is a substitution of serine at position 181 with phenylalanine, methionine or leucine.
Claims
1. A pectinase comprising a modified amino acid sequence of SEQ ID NO: 2, wherein the modification is a substitution of serine at position 181 with phenylalanine, methionine or leucine.
2. The pectinase according to claim 1 wherein the amino acid sequence of SEQ ID NO: 2 is encoded by PcPEL gene isolated from Paenibacillus campinasensis BL-11.
3. The pectinase according to claim 1 being a pectate lyase.
4. The pectinase according to claim 1 having a full length amino acid sequence of SEQ ID NO: 4.
5. The pectinase according to claim 1 having a full length amino acid sequence of SEQ ID NO: 6.
6. The pectinase according to claim 1 having a full length amino acid sequence of SEQ ID NO: 8.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
(8) The present invention will now be described more specifically with reference to the following embodiments. It is to be noted that the following descriptions of preferred embodiments of this invention are presented herein for purpose of illustration and description only; it is not intended to be exhaustive or to be limited to the precise form disclosed.
(9) In the present invention, the gene of the pectate lyase (PcPEL) was isolated from alkalophilic bacterium Paenibacillus campinasensis BL-11 strain, and the encoded enzyme showed its optimal activity at 50 C., pH 10 according to a previous study. To improve the thermostability of this pectate lyase, the enzyme was modified by site-directed mutagenesis based on its structural information. For understanding the structural information and the catalytic mechanism of this enzyme, the protein structure of PcPEL was solved by X-ray crystallography. According to the structural analysis, serine at position 181 where is near the active site of the enzyme was chosen and mutated to phenylalanine, methionine and leucine, respectively, by site-directed mutagenesis. As a result, the present invention successfully improves the thermostability of PcPEL and further enhances the economic value of this pectate lyase for industrial application. The enzyme modification process of PcPEL and the resulted protein are described in detail as follows.
(10) First, the PcPEL gene was cloned into pPICZA vector, and as shown in
(11) For solving the protein structure of PcPEL by X-ray crystallography, the protein crystal was screened by crystal screen kits using sitting drop vapor diffusion method and then obtained by a condition of 0.1 M Bis-Tris, pH 6.5; 0.2 M Lithium sulfate and 25% PEG3350 at room temperature for 2 days. The phase problem was solved by using molecular replacement method, and the protein structure of PcPEL was subsequently determined by computing.
(12) As shown in
(13) The mutated genes were separately obtained by PCR method using the designed mutagenic primers shown in
(14) The gene sequences and the amino acid sequences of the three mutants are shown in
(15) The pectate lyase activity was determined by measurement of the increase in the absorbance of unsaturated bonds produced from the cleavage of the polygalacturonic acid (PGA) substrate between C4 and C5 at OD235 nm. The reaction mixture that includes 0.5 ml diluted protein sample and 2 ml 0.2% PGA in pH 9.4 glycine-NaOH buffer containing 0.6 mM CaCl.sub.2 was incubated at 45 C. for 10 min. The reaction was then stopped by adding 3 ml 30 mM phosphoric acid. Finally, the absorption of OD235 nm was detected to determine the activity of the pectate lyase.
(16) For the thermostability analysis, all mutants and the wild-type protein were separately incubated at 65 C., 68 C., 70 C. and 75 C. for 2 min and subsequently cooled on ice for 5 min and recovered at room temperature for another 5 min. Finally, the residual enzyme activities of the treated samples were determined as previously mentioned.
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(18) From the above, in order to increase the industrial value of the pectate lyase, the present invention modified PcPEL by rational design to improve the thermostability of PcPEL. According to the structural analysis, Ser181 which is located near the active site of PcPEL was chosen to be mutated to phenylalanine, methionine and leucine, respectively, by site-directed mutagenesis to acquire the three mutants of PcPEL including S181F, S181M and S181L. From the thermostability analysis, the thermostabilities of S181F, S181M and S181L mutants were all higher than that of the wild type. Therefore, the present invention successfully improves the thermostability of PcPEL and further enhances the economic value of this pectate lyase for industrial application.
(19) While the invention has been described in terms of what is presently considered to be the most practical and preferred embodiments, it is to be understood that the invention needs not be limited to the disclosed embodiment. On the contrary, it is intended to cover various modifications and similar arrangements included within the spirit and scope of the appended claims which are to be accorded with the broadest interpretation so as to encompass all such modifications and similar structures.