Patent classifications
C12N15/77
Adenylosuccinate synthetase and method for producing purine nucleotides using the same
The present disclosure relates to an adenylosuccinate synthetase variant, a microorganism containing the same, and a method for preparing purine nucleotides using the microorganism.
L-METHIONINE PRODUCING MICROORGANISM TO WHICH PROTEIN ENCODED BY FOREIGN METZ GENE IS INTRODUCED AND METHOD FOR PRODUCING L-METHIONINE USING SAME
An L-methionine-producing microorganism into which a metZ gene is introduced and a method of producing L-methionine using the same.
L-METHIONINE PRODUCING MICROORGANISM TO WHICH PROTEIN ENCODED BY FOREIGN METZ GENE IS INTRODUCED AND METHOD FOR PRODUCING L-METHIONINE USING SAME
An L-methionine-producing microorganism into which a metZ gene is introduced and a method of producing L-methionine using the same.
Genetic perturbation of the RNA degradosome protein complex
The present disclosure provides novel bacterial strains with altered expression or start codon modification of one or more RNA degradation/processing genes. The RNA degradation genes of the present disclosure are controlled by heterologous promoters. The present disclosure further describes methods for generating microbial strains comprising heterologous promoter sequences operably linked to RNA degradation/processing genes.
Genetic perturbation of the RNA degradosome protein complex
The present disclosure provides novel bacterial strains with altered expression or start codon modification of one or more RNA degradation/processing genes. The RNA degradation genes of the present disclosure are controlled by heterologous promoters. The present disclosure further describes methods for generating microbial strains comprising heterologous promoter sequences operably linked to RNA degradation/processing genes.
NOVEL BRANCHED-CHAIN AMINO ACID AMINOTRANSFERASE VARIANT AND METHOD FOR PRODUCING LEUCINE USING THE SAME
A novel branched-chain amino acid aminotransferase variant and a method for producing leucine using the same.
NOVEL BRANCHED-CHAIN AMINO ACID AMINOTRANSFERASE VARIANT AND METHOD FOR PRODUCING LEUCINE USING THE SAME
A novel branched-chain amino acid aminotransferase variant and a method for producing leucine using the same.
Polypeptide Having 4-Aminobenzoic Acid Hydroxylation Activity and Use Thereof
Provided are a polypeptide having excellent 4-aminobenzoic acid hydroxylation activity and a method for using the same. The present invention provides a polypeptide having 4-aminobenzoic acid hydroxylation activity, consisting of the amino acid sequence represented by SEQ ID NO: 2 or an amino acid sequence having at least 47% identity thereto, and having an amino acid residue at position 47 of the amino acid sequence represented by SEQ ID NO: 2 or a position corresponding thereto being leucine.
Polypeptide Having 4-Aminobenzoic Acid Hydroxylation Activity and Use Thereof
Provided are a polypeptide having excellent 4-aminobenzoic acid hydroxylation activity and a method for using the same. The present invention provides a polypeptide having 4-aminobenzoic acid hydroxylation activity, consisting of the amino acid sequence represented by SEQ ID NO: 2 or an amino acid sequence having at least 47% identity thereto, and having an amino acid residue at position 47 of the amino acid sequence represented by SEQ ID NO: 2 or a position corresponding thereto being leucine.
Microorganisms and methods for enhancing the availability of reducing equivalents in the presence of methanol, and for producing succinate related thereto
Provided herein is a non-naturally occurring microbial organism (NNOMO) having a methanol metabolic pathway (MMP) that can enhance the availability of reducing equivalents in the presence of methanol. Such reducing equivalents can be used to increase the product yield of organic compounds produced by the microbial organism, such as succinate. Also provided herein are methods for using such an organism to produce succinate.