International audienceWe recently showed that expressing an H2O-NADH oxidase in Saccharomyces cerevisiae drastically reduces the intracellular NADH concentration and substantially alters the distribution of metabolic fluxes in the cell. Although the engineered strain produces a reduced amount of ethanol, a high level of acetaldehyde accumulates early in the process (1 g/liter), impairing growth and fermentation performance. To overcome these undesirable effects, we carried out a comprehensive analysis of the impact of oxygen on the metabolic network of the same NADH oxidase-expressing strain. While reducing the oxygen transfer rate led to a gradual recovery of the growth and fermentation performance, its impact on the ethanol yield was negl...
Abstract Background Glycerol, whose formation contributes to cellular redox balancing and osmoregula...
Many metabolic engineering strategies rely on the manipulation of enzyme levels to achieve the ampl...
Saccharomyces cerevisiae has recently been engineered to use acetate, a primary inhibitor in lignoce...
International audienceWe recently showed that expressing an H2O-NADH oxidase in Saccharomyces cerevi...
International audienceThe pyridine nucleotides NAD(H) and NADP(H) play major roles in the formation ...
International audienceThe pyridine nucleotides NAD(H) and NADP(H) play major roles in the formation ...
<p>Background: Glycerol, whose formation contributes to cellular redox balancing and osmoregulation ...
Background: Glycerol, whose formation contributes to cellular redox balancing and osmoregulation in ...
Background: Glycerol, whose formation contributes to cellular redox balancing and osmoregulation in ...
Many metabolic engineering strategies rely on the manipulation of enzyme levels to achieve the ampl...
Background: Acetic acid, an inhibitor of sugar fermentation by yeast, is invariably present in ligno...
Metabolic engineering has been vital to the development of industrial microbes such as the yeast Sac...
Engineering the level of metabolic cofactors to manipulate metabolic flux is emerging as an attracti...
Engineering the level of metabolic cofactors to manipulate metabolic flux is emerging as an attracti...
Engineering the level of metabolic cofactors to manipulate metabolic flux is emerging as an attracti...
Abstract Background Glycerol, whose formation contributes to cellular redox balancing and osmoregula...
Many metabolic engineering strategies rely on the manipulation of enzyme levels to achieve the ampl...
Saccharomyces cerevisiae has recently been engineered to use acetate, a primary inhibitor in lignoce...
International audienceWe recently showed that expressing an H2O-NADH oxidase in Saccharomyces cerevi...
International audienceThe pyridine nucleotides NAD(H) and NADP(H) play major roles in the formation ...
International audienceThe pyridine nucleotides NAD(H) and NADP(H) play major roles in the formation ...
<p>Background: Glycerol, whose formation contributes to cellular redox balancing and osmoregulation ...
Background: Glycerol, whose formation contributes to cellular redox balancing and osmoregulation in ...
Background: Glycerol, whose formation contributes to cellular redox balancing and osmoregulation in ...
Many metabolic engineering strategies rely on the manipulation of enzyme levels to achieve the ampl...
Background: Acetic acid, an inhibitor of sugar fermentation by yeast, is invariably present in ligno...
Metabolic engineering has been vital to the development of industrial microbes such as the yeast Sac...
Engineering the level of metabolic cofactors to manipulate metabolic flux is emerging as an attracti...
Engineering the level of metabolic cofactors to manipulate metabolic flux is emerging as an attracti...
Engineering the level of metabolic cofactors to manipulate metabolic flux is emerging as an attracti...
Abstract Background Glycerol, whose formation contributes to cellular redox balancing and osmoregula...
Many metabolic engineering strategies rely on the manipulation of enzyme levels to achieve the ampl...
Saccharomyces cerevisiae has recently been engineered to use acetate, a primary inhibitor in lignoce...