摘要:
The present invention relates to a microorganism producing L-methionine precursor, O-acetylhomoserine, and a method of producing L-methionine precursor using the microorganism.
摘要:
The present invention relates to a microorganism producing L-methionine precursor, O-succinylhomoserine, and a method of producing L-methionine precursor using the microorganism.
摘要:
Disclosed herein are a microorganism strain capable of producing the L-methionine precursor O-acetyl homoserine in high yield and a method of producing O-acetyl homoserine using the same. The microorganism strain is a strain of Escherichia sp. in which an acetyl-CoA synthase gene ( acs ) and/or a pantothenate kinase gene ( coaA ) encoding a pantothenate kinase gene refractory to feedback inhibition by CoA is introduced and expressed.
摘要:
Disclosed is a strain of Escherichia sp., capable of producing O-acetyl homoserine in high yield, with the introduction and enhancement therein of the activity of: homoserine acetyl transferase, aspartokinase and homoserine dehydrogenase; and at least one enzyme selected from a group consisting of phosphoenolpyruvate carboxylase, aspartate aminotransferase and aspartate semi-aldehyde dehydrogenase. Also, a method of producing O-acetyl homoserine using the strain is provided.
摘要:
Disclosed herein are a microorganism strain capable of producing the L-methionine precursor O-acetyl homoserine in high yield and a method of producing O-acetyl homoserine using the same. The microorganism strain is a strain of Escherichia sp. in which an acetyl-CoA synthase gene ( acs ) and/or a pantothenate kinase gene ( coaA ) encoding a pantothenate kinase gene refractory to feedback inhibition by CoA is introduced and expressed.
摘要:
To produce quinolinate effectively, a L-aspartate oxidase variant that the feedback regulation by nicotinic acid or NAD is released, and a microorganism including the L-aspartate oxidase variant are provided. Quinolinate may be effectively produced by culturing of the microorganism including the L-aspartate oxidase variant.
摘要:
Disclosed herein are a microorganism strain capable of producing the L-methionine precursor 0-acetyl homoserine in high yield and a method of producing 0-acetyl homoserine using the same. The microorganism strain is a strain of Escherichia sp. in which an acetyl-CoA synthase gene ( acs ) and/or a pantothenate kinase gene ( coaA ) encoding a pantothenate kinase gene refractory to feedback inhibition by CoA is introduced and expressed.