SummarySaccharomyces cerevisiae responds to elevated levels of hydrogen peroxide in its environment via a redox relay system comprising the thiol peroxidase Gpx3 and transcription factor Yap1. In this signaling pathway, a central unresolved question is whether cysteine sulfenic acid modification of Gpx3 is required for Yap1 activation in cells. Here we report that cell-permeable chemical probes, which are selective for sulfenic acid, inhibit peroxide-dependent nuclear accumulation of Yap1, trap the Gpx3 sulfenic acid intermediate, and block formation of the Yap1-Gpx3 intermolecular disulfide directly in cells. In addition, we present electrostatic calculations that show cysteine oxidation is accompanied by significant changes in charge dist...
The yeast Saccharomyces cerevisiae transcription factor Yap1 mediates an adaptive response to oxidat...
AbstractCysteine residues, and in particular their thiolate groups, react not only with reactive oxy...
We investigated the changes in the oxidative stress response of yeast cells suffering mitochondrial ...
SummarySaccharomyces cerevisiae responds to elevated levels of hydrogen peroxide in its environment ...
AbstractThe Yap1 transcription factor regulates hydroperoxide homeostasis in S. cerevisiae. Yap1 is ...
Les peroxydases à thiol jouent un rôle central dans la physiologie du peroxyde d’hydrogène (H2O2), u...
International audienceThe Yap1 transcription factor regulates hydroperoxide homeostasis in S. cerevi...
International audienceThe Yap1 transcription factor regulates hydroperoxide homeostasis in S. cerevi...
International audienceThe Yap1 transcription factor regulates hydroperoxide homeostasis in S. cerevi...
AbstractThe Yap1 transcription factor regulates hydroperoxide homeostasis in S. cerevisiae. Yap1 is ...
Thiol-peroxidases play a central role in the physiology of hydrogen peroxide, an oxidant which can a...
Protein structure and function can be altered by reactive oxygen species produced either by cell met...
SummaryIn fission yeast, the transcription factor Pap1 undergoes H2O2-dependent oxidation that promo...
Thiol-peroxidases play a central role in the physiology of hydrogen peroxide, an oxidant which can a...
The yeast Saccharomyces cerevisiae transcription factor Yap1 mediates an adaptive response to oxidat...
The yeast Saccharomyces cerevisiae transcription factor Yap1 mediates an adaptive response to oxidat...
AbstractCysteine residues, and in particular their thiolate groups, react not only with reactive oxy...
We investigated the changes in the oxidative stress response of yeast cells suffering mitochondrial ...
SummarySaccharomyces cerevisiae responds to elevated levels of hydrogen peroxide in its environment ...
AbstractThe Yap1 transcription factor regulates hydroperoxide homeostasis in S. cerevisiae. Yap1 is ...
Les peroxydases à thiol jouent un rôle central dans la physiologie du peroxyde d’hydrogène (H2O2), u...
International audienceThe Yap1 transcription factor regulates hydroperoxide homeostasis in S. cerevi...
International audienceThe Yap1 transcription factor regulates hydroperoxide homeostasis in S. cerevi...
International audienceThe Yap1 transcription factor regulates hydroperoxide homeostasis in S. cerevi...
AbstractThe Yap1 transcription factor regulates hydroperoxide homeostasis in S. cerevisiae. Yap1 is ...
Thiol-peroxidases play a central role in the physiology of hydrogen peroxide, an oxidant which can a...
Protein structure and function can be altered by reactive oxygen species produced either by cell met...
SummaryIn fission yeast, the transcription factor Pap1 undergoes H2O2-dependent oxidation that promo...
Thiol-peroxidases play a central role in the physiology of hydrogen peroxide, an oxidant which can a...
The yeast Saccharomyces cerevisiae transcription factor Yap1 mediates an adaptive response to oxidat...
The yeast Saccharomyces cerevisiae transcription factor Yap1 mediates an adaptive response to oxidat...
AbstractCysteine residues, and in particular their thiolate groups, react not only with reactive oxy...
We investigated the changes in the oxidative stress response of yeast cells suffering mitochondrial ...