Patent classifications
C12P17/02
rDNA NTS-BASED GENE MULTIPLE INSERTION CASSETTE SET AND GRAS-GRADE RECOMBINANT YEAST STRAIN
Disclosed is a gene multiple insertion cassette set including rDNA NTS fragments and an auxotrophic selection marker having an incomplete promoter is developed, and a safe oral recombinant strain having no antibiotic resistant marker is constructed by multiple insertion of an optimum number of the developed gene multiple insertion cassette sets into chromosomes of a Saccharomyces cerevisiae strain, a vaccine composition including, as an active ingredient, the above strain, a culture product thereof, a cell lysate, or nodavirus capsid protein (NNVcp) isolated and purified therefrom, and a composition for feed addition including, as an active ingredient, the above strain, a culture product thereof, a cell lysate, or squalene or oxidosqualene isolated and purified therefrom.
Hierarchical magnetic nanoparticle enzyme mesoporous assemblies embedded in macroporous scaffolds
A hierarchical catalyst composition comprising a continuous or particulate macroporous scaffold in which is incorporated mesoporous aggregates of magnetic nanoparticles, wherein an enzyme is embedded in mesopores of the mesoporous aggregates of magnetic nanoparticles. Methods for synthesizing the hierarchical catalyst composition are also described. Also described are processes that use the recoverable hierarchical catalyst composition for depolymerizing lignin, remediation of water contaminated with aromatic substances, polymerizing monomers by a free-radical mechanism, epoxidation of alkenes, halogenation of phenols, inhibiting growth and function of microorganisms in a solution, and carbon dioxide conversion to methanol. Further described are methods for increasing the space time yield and/or total turnover number of a liquid-phase chemical reaction that includes magnetic particles to facilitate the chemical reaction, the method comprising subjecting the chemical reaction to a plurality of magnetic fields of selected magnetic strength, relative position in the chemical reaction, and relative motion.
Hierarchical magnetic nanoparticle enzyme mesoporous assemblies embedded in macroporous scaffolds
A hierarchical catalyst composition comprising a continuous or particulate macroporous scaffold in which is incorporated mesoporous aggregates of magnetic nanoparticles, wherein an enzyme is embedded in mesopores of the mesoporous aggregates of magnetic nanoparticles. Methods for synthesizing the hierarchical catalyst composition are also described. Also described are processes that use the recoverable hierarchical catalyst composition for depolymerizing lignin, remediation of water contaminated with aromatic substances, polymerizing monomers by a free-radical mechanism, epoxidation of alkenes, halogenation of phenols, inhibiting growth and function of microorganisms in a solution, and carbon dioxide conversion to methanol. Further described are methods for increasing the space time yield and/or total turnover number of a liquid-phase chemical reaction that includes magnetic particles to facilitate the chemical reaction, the method comprising subjecting the chemical reaction to a plurality of magnetic fields of selected magnetic strength, relative position in the chemical reaction, and relative motion.
Compositions Comprising A Polypeptide Having Cellulolytic Enhancing Activity And An Organic Compound And Uses Thereof
The present invention relates to compositions comprising: a polypeptide having cellulolytic enhancing activity and an organic compound. The present invention also relates to methods of using the compositions.
METHOD FOR THE BIOSYNTHESIS OF DIOSMIN AND/OR HESPERIDIN IN A MICROORGANISM
The present invention relates to a recombinant microorganism which is modified to be capable of producing diosmin and hesperidin and to the use thereof for producing diosmin and/or hesperidin.
Terpenoid derivatives
It is intended to provide a novel terpenoid derivative that exhibits anti-inflammatory action and a cytoprotective action by activating the Keap1/Nrf2/ARE signaling pathway. The present invention provides terpenoid derivative A represented by the following formula (I): ##STR00001##
Terpenoid derivatives
It is intended to provide a novel terpenoid derivative that exhibits anti-inflammatory action and a cytoprotective action by activating the Keap1/Nrf2/ARE signaling pathway. The present invention provides terpenoid derivative A represented by the following formula (I): ##STR00001##
UNSPECIFIC PEROXYGENASE ENZYME VARIANTS FOR SELECTIVE FATTY ACID EPOXIDATION OR HYDROXYLATION
The invention relates to a recombinant Marasmius rotula unspecific peroxygenase (rMroURO) and two mutants thereof, wherein said mutants show enhanced selectivity towards either the epoxidation or the (sub)terminal ω/(ω-1)-hydroxylation of unsaturated fatty acids. The invention also refers to the use of these enzyme variants for the specific epoxidation or hydroxylation of fatty acids such as oleic acid, linoleic acid and/or alpha-linolenic acid.
UNSPECIFIC PEROXYGENASE ENZYME VARIANTS FOR SELECTIVE FATTY ACID EPOXIDATION OR HYDROXYLATION
The invention relates to a recombinant Marasmius rotula unspecific peroxygenase (rMroURO) and two mutants thereof, wherein said mutants show enhanced selectivity towards either the epoxidation or the (sub)terminal ω/(ω-1)-hydroxylation of unsaturated fatty acids. The invention also refers to the use of these enzyme variants for the specific epoxidation or hydroxylation of fatty acids such as oleic acid, linoleic acid and/or alpha-linolenic acid.
SOUTHERN GREEN STINK BUG PHEROMONE SYNTHESIS ENZYMES AND USES THEREOF
Described herein are engineered polynucleotides and vectors capable of encoding one or more engineered southern green stink bug pheromone synthesis enzymes. Also described herein are engineered southern green stink bug pheromone synthesis enzymes. Also described herein are methods of making modified plants capable of expressing one or more southern green stink bug pheromone synthesis enzymes.