AbstractDuring oxidative stress in Escherichia coli, the SufABCDSE stress response pathway mediates iron–sulfur (Fe–S) cluster biogenesis rather than the Isc pathway. To determine why the Suf pathway is favored under stress conditions, the stress response SufS–SufE sulfur transfer pathway and the basal housekeeping IscS–IscU pathway were directly compared. We found that SufS–SufE cysteine desulfurase activity is significantly higher than IscS–IscU at physiological cysteine concentrations and after exposure to H2O2. Mass spectrometry analysis demonstrated that IscS–IscU is more susceptible than SufS–SufE to oxidative modification by H2O2. These important results provide biochemical insight into the stress resistance of the Suf pathway
AbstractSufS is a cysteine desulfurase of the suf operon shown to be involved in iron–sulfur cluster...
Fe-S clusters are one major type of the sulfur-containing cofactors, which conduct essential functio...
International audienceAbstractFe/S biosynthesis is controlled in Escherichia coli by two machineries...
AbstractDuring oxidative stress in Escherichia coli, the SufABCDSE stress response pathway mediates ...
Fe-S clusters are critical metallocofactors required for cell function. Because of the toxicity of f...
Fe-S clusters are critical metallocofactors required for cell function. Because of the toxicity of f...
Iron homeostasis is crucial to overall cellular health. To keep iron levels in the cell stable, orga...
The regulation of transition metals within living organisms is essential to the persistence of life....
The regulation of transition metals within living organisms is essential to the persistence of life....
AbstractSufS is a cysteine desulfurase of the suf operon shown to be involved in iron–sulfur cluster...
AbstractIron–sulfur cluster biosynthesis depends on protein machineries, such as the ISC and SUF sys...
The first step in sulfur mobilization for the biosynthesis of Fe–S clusters under oxidative stress a...
International audienceAbstractFe/S biosynthesis is controlled in Escherichia coli by two machineries...
International audienceAbstractFe/S biosynthesis is controlled in Escherichia coli by two machineries...
International audienceAbstractFe/S biosynthesis is controlled in Escherichia coli by two machineries...
AbstractSufS is a cysteine desulfurase of the suf operon shown to be involved in iron–sulfur cluster...
Fe-S clusters are one major type of the sulfur-containing cofactors, which conduct essential functio...
International audienceAbstractFe/S biosynthesis is controlled in Escherichia coli by two machineries...
AbstractDuring oxidative stress in Escherichia coli, the SufABCDSE stress response pathway mediates ...
Fe-S clusters are critical metallocofactors required for cell function. Because of the toxicity of f...
Fe-S clusters are critical metallocofactors required for cell function. Because of the toxicity of f...
Iron homeostasis is crucial to overall cellular health. To keep iron levels in the cell stable, orga...
The regulation of transition metals within living organisms is essential to the persistence of life....
The regulation of transition metals within living organisms is essential to the persistence of life....
AbstractSufS is a cysteine desulfurase of the suf operon shown to be involved in iron–sulfur cluster...
AbstractIron–sulfur cluster biosynthesis depends on protein machineries, such as the ISC and SUF sys...
The first step in sulfur mobilization for the biosynthesis of Fe–S clusters under oxidative stress a...
International audienceAbstractFe/S biosynthesis is controlled in Escherichia coli by two machineries...
International audienceAbstractFe/S biosynthesis is controlled in Escherichia coli by two machineries...
International audienceAbstractFe/S biosynthesis is controlled in Escherichia coli by two machineries...
AbstractSufS is a cysteine desulfurase of the suf operon shown to be involved in iron–sulfur cluster...
Fe-S clusters are one major type of the sulfur-containing cofactors, which conduct essential functio...
International audienceAbstractFe/S biosynthesis is controlled in Escherichia coli by two machineries...