Abstract:
A Corynebacterium including an NAD+ dependent formate dehydrogenase gene, and a method of producing C4 dicarboxylic acid using the Corynebacterium.
Abstract:
A genetically engineered bacterial cell wherein activity of a pathway in the cell of converting α-ketoglutarate into succinate semialdehyde; or activity of succinyl semialdehyde dehydrogenase in the cell is increased compared to the activity in a non-genetically engineered cell of the same type, and a method of producing succinic acid by using the same.
Abstract:
A polypeptide including a region A, a region B, and a region C, a photoresist composition including the polypeptide, and a method of forming patterns by using the photoresist composition.
Abstract:
A polypeptide, a photoresist composition including the polypeptide, a photoresist including the polypeptide, and a method of forming patterns using the photoresist composition.
Abstract:
Provided is a genetically engineered yeast cell with lactate production capacity, including an enzyme that catalyzes conversion of acetaldehyde to acetyl-CoA and an enzyme that catalyzes conversion of pyruvate to lactate, which activities are increased compared to a parent cell of the yeast cell, as well as a method of producing the genetically engineered yeast cell and method of producing lactate using the genetically engineered yeast cell.