AbstractThe physiological roles of the thioredoxin isozymes in the yeast Saccharomyces cerevisiae were investigated using a novel FRET-based redox probe, Redoxfluor. After establishing responsiveness of the probe toward thioredoxin, we followed the fluorescence signal of Redoxfluor expressed in the yeast and found that one of the thioredoxin isozymes, Trx2, was required for maintaining the redox status when stationary culture of the organism was exposed to starvation and mild-heat stresses. The failure to maintain redox balance under the tested condition preceded decreased viability of the trx2 mutants, indicating the functional importance of the cytoplasmic thioredoxin in adaptation to environmental changes
Thioredoxins are small proteins that regulate the cellular redox state, prevent oxidative damage, an...
Thioredoxins are small proteins that regulate the cellular redox state, prevent oxidative damage, an...
AbstractThe eukaryotic cytoplasm has long been regarded as a cellular compartment in which the reduc...
AbstractThe physiological roles of the thioredoxin isozymes in the yeast Saccharomyces cerevisiae we...
Maintenance of an optimal redox environment is critical for appropriate functioning of cellular proc...
The thioredoxin system plays a predominant role in the control of cellular redox status. Thioredoxin...
<div><p>Maintenance of an optimal redox environment is critical for appropriate functioning of cellu...
Cellular mechanisms that maintain redox homeostasis are crucial, providing buffering against oxidati...
Maintenance of an optimal redox environment is critical for appropriate functioning of cellular proc...
Maintenance of an optimal redox environment is critical for appropriate functioning of cellular proc...
Maintenance of an optimal redox environment is critical for appropriate functioning of cellular proc...
Intracellular redox homeostasis is crucial for many cellular functions but accurate measurements of ...
AbstractPreviously we reported that in vitro translation activity in extracts of Saccharomyces cerev...
AbstractGlutathione is an abundant, low-molecular-weight tripeptide whose biological importance is d...
SummaryIn fission yeast, the transcription factor Pap1 undergoes H2O2-dependent oxidation that promo...
Thioredoxins are small proteins that regulate the cellular redox state, prevent oxidative damage, an...
Thioredoxins are small proteins that regulate the cellular redox state, prevent oxidative damage, an...
AbstractThe eukaryotic cytoplasm has long been regarded as a cellular compartment in which the reduc...
AbstractThe physiological roles of the thioredoxin isozymes in the yeast Saccharomyces cerevisiae we...
Maintenance of an optimal redox environment is critical for appropriate functioning of cellular proc...
The thioredoxin system plays a predominant role in the control of cellular redox status. Thioredoxin...
<div><p>Maintenance of an optimal redox environment is critical for appropriate functioning of cellu...
Cellular mechanisms that maintain redox homeostasis are crucial, providing buffering against oxidati...
Maintenance of an optimal redox environment is critical for appropriate functioning of cellular proc...
Maintenance of an optimal redox environment is critical for appropriate functioning of cellular proc...
Maintenance of an optimal redox environment is critical for appropriate functioning of cellular proc...
Intracellular redox homeostasis is crucial for many cellular functions but accurate measurements of ...
AbstractPreviously we reported that in vitro translation activity in extracts of Saccharomyces cerev...
AbstractGlutathione is an abundant, low-molecular-weight tripeptide whose biological importance is d...
SummaryIn fission yeast, the transcription factor Pap1 undergoes H2O2-dependent oxidation that promo...
Thioredoxins are small proteins that regulate the cellular redox state, prevent oxidative damage, an...
Thioredoxins are small proteins that regulate the cellular redox state, prevent oxidative damage, an...
AbstractThe eukaryotic cytoplasm has long been regarded as a cellular compartment in which the reduc...