摘要:
The present invention is directed to a process for producing L-aspartyl-L-phenylalanine and/or L-aspartyl-L-phenylalanine diketopiperazine comprising contacting and reacting a culture, cell or a cell-treated product of a microorganism capable of hydrolyzing DKP into AP or capable of performing intramolecular condensation of AP into DKP with DKP and/or AP, in an aqueous medium.
摘要:
A process for producing L-aspartyl-L-phenylalanine alkyl or aryl esters wherein L-aspartic acid and L-phenylalanine which is esterified with an alkyl group having at least two carbon atoms, an aryl group or an aralkyl group, are contacted in an aqueous medium with particular microorganisms or enzyme fractions from these microorganisms and the condensed product crystallizes out due to insolubility in the aqueous medium.
摘要:
A process for producing L-phenylalanine, which comprises reacting cinnamic acid and an ammonia generator in an aqueous medium in the presence of an enzyme or enzymes from a microorganism belonging to the genus Geotrichum, Moniliella, Syncephalastrum, Endomyces, Aspergillus, Saccharomycopis, Eurotium, Glomerella, Pellicularia or Conatobotyrum, wherein the enzyme or enzymes are capable of producing L-phenylalanine from cinnamic acid and an ammonia generator, and collecting L-phenylalanine from the aqueous medium, is disclosed along with both new and old microorganisms that can be used in the practice of the invention.
摘要:
The present invention relates to methods for producing ribavirin utilizing microorganisms and a method for producing ribose-1-phosphoric acid which is a precursor of ribavirin. The methods involve contacting certain microorganisms with orotidine, orotidic acid, or salts thereof, and inorganic phosphoric acid or a salt thereof (to produce ribose-1-phosphoric acid), and further with 1,2,4-triazole-3-carboxamide or a salt thereof (to produce ribavirin) in an aqueous solvent.
摘要:
A process for the production of L-aspartyl-L-phenylalanine methyl ester of L-aspartyl-L-phenylalanine by contacting an appropriate microorganism or enzyme-containing fraction of said microorganism with L-aspartic acid and L-phenylalanine methyl ester or L-phenylalanine in an aqueous medium so that L-aspartyl-L-phenylalanine methyl ester or L-aspartyl-L-phenylalanine is produced.
摘要:
A process for producing L-serine by the combination of chemical synthesis and enzyme chemical synthesis is disclosed. In this process L-serine is biochemically produced from 2-oxo-axazolidine-4-carboxylic acid or a salt thereof.
摘要:
A method for producing L-carnitine which involves contacting crotonbetaine or a non-toxic, soluble salt of this compound with a microorganism or an enzyme fraction of this microorganism which is capable of converting crotonbetaine or its salts into L-carnitine. The conversion is conducted in an aqueous medium under conditions suitable for production of L-carnitine.
摘要:
It is an object of the present invention to provide a procedure for realizing inexpensive and simple production of 3-indole-pyruvic acid. A transformant is made using a polynucleotide having a specific nucleotide sequence encoding a protein having an oxidase activity, and oxidase is generated by culturing the transformant in a medium to accumulate the oxidase in the medium and/or the transformant. Further, tryptophan is converted into 3-indole-pyruvic acid in the presence of the transformant and/or a culture thereof to produce 3-indole-pyruvic acid.
摘要:
DNA and recombinant DNA that encode a peptide-forming enzyme, a method for producing a peptide-forming enzyme, and a method for producing a dipeptide are disclosed. A method for producing a dipeptide includes producing a dipeptide from a carboxy component and an amine component by using a culture of a microbe belonging to the genus Sphingobacterium and having the ability to form the dipeptide from the carboxy component and the amine component, a microbial cell separated from the culture, treated microbial cell product of the microbe or a peptide-forming enzyme derived from the microbe.
摘要:
DNA and recombinant DNA that encode a peptide-forming enzyme, a method for producing a peptide-forming enzyme, and a method for producing a dipeptide are disclosed. A method for producing a dipeptide includes producing a dipeptide from a carboxy component and an amine component by using a culture of a microbe belonging to the genus Sphingobacterium and having the ability to form the dipeptide from the carboxy component and the amine component, a microbial cell separated from the culture, treated microbial cell product of the microbe or a peptide-forming enzyme derived from the microbe.