Abstract:
A genetically modified yeast cell that is capable of consuming glucose at an increased rate and a method of efficiently producing pyruvate or pyruvate-derived products by using the yeast cell.
Abstract:
Provided is an acid-resistant yeast cell that is genetically engineered to enhance activity of a radiation sensitivity complementing kinase, and a method of producing lactate by using the yeast cell.
Abstract:
Saccharomyces cerevisiae having acid resistance at a pH of about 2.0 to about 5.0, a method of preparing the Saccharomyces cerevisiae, and a method of producing lactate.
Abstract:
A genetically engineered yeast cell capable of producing lactate having increased TPI activity, a method of preparing the yeast cell, and a method of producing lactate by using the yeast cell.
Abstract:
A genetically modified yeast cell that is capable of consuming glucose at an increased rate and a method of efficiently producing pyruvate or pyruvate-derived products by using the yeast cell.
Abstract:
Provided is an acid-resistant yeast cell that is genetically engineered to enhance activity of a radiation sensitivity complementing kinase, and a method of producing lactate by using the yeast cell.
Abstract:
A recombinant yeast cell capable of consuming glucose at an increased rate, and a method of efficiently producing glycolysis-derived products using the recombinant yeast cell.
Abstract:
A genetically engineered yeast cell capable of producing lactate having increased TPI activity, a method of preparing the yeast cell, and a method of producing lactate by using the yeast cell.
Abstract:
Saccharomyces cerevisiae having acid resistance at a pH of about 2.0 to about 5.0, a method of preparing the Saccharomyces cerevisiae, and a method of producing lactate.