Protein sulfinic acids are formed by the reaction of reactive oxygen species with protein thiols. Sulfinic acid formation has long been considered an irreversible state of oxidation and is associated with high cellular oxidative stress. Increasing evidence, however, indicates that cysteine is oxidized to sulfinic acid in cells to a greater extent, and is more controlled, than first thought. The discovery of sulfiredoxin has demonstrated that cysteine sulfinic acid can be reversed, pointing to a vast array of potential implications for redox biology. Identification of the site of protein sulfinylation is crucial in clarifying the physiological and pathological effects of post-translational modifications. Currently, the only methods for detec...
The oxidation of protein cysteine residues represents significant posttranslational modifications th...
The oxidation of protein cysteine residues represents significant posttranslational modifications th...
The oxidation of protein cysteine residues represents significant posttranslational modifications th...
AbstractBackgroundReactive oxygen species-mediated cysteine sulfenic acid modification has emerged a...
A principal product of the reaction between a protein cysteinyl thiol and hydrogen peroxide is a pro...
A principal product of the reaction between a protein cysteinyl thiol and hydrogen peroxide is a pro...
A principal product of the reaction between a protein cysteinyl thiol and hydrogen peroxide is a pro...
Protein sulfenylation (RSOH), the redox‐based modification of cysteine thiol side chains by hydrogen...
Oxidation of cysteine to sulfenic acid has emerged as a biologically relevant post-translational mod...
AbstractBackgroundReactive oxygen species-mediated cysteine sulfenic acid modification has emerged a...
Cysteine residues oxidized to sulfinic acids (R-SO2H) are observed in many proteins. In fact, there...
Oxidation of cysteine to sulfenic acid has emerged as a biologically relevant post-translational mod...
Cysteine S-nitrosation and S-sulfination are naturally occurring post-translational modifications (P...
Cysteine S-nitrosation and S-sulfination are naturally occurring post-translational modifications (P...
The oxidation of protein cysteine residues represents significant posttranslational modifications th...
The oxidation of protein cysteine residues represents significant posttranslational modifications th...
The oxidation of protein cysteine residues represents significant posttranslational modifications th...
The oxidation of protein cysteine residues represents significant posttranslational modifications th...
AbstractBackgroundReactive oxygen species-mediated cysteine sulfenic acid modification has emerged a...
A principal product of the reaction between a protein cysteinyl thiol and hydrogen peroxide is a pro...
A principal product of the reaction between a protein cysteinyl thiol and hydrogen peroxide is a pro...
A principal product of the reaction between a protein cysteinyl thiol and hydrogen peroxide is a pro...
Protein sulfenylation (RSOH), the redox‐based modification of cysteine thiol side chains by hydrogen...
Oxidation of cysteine to sulfenic acid has emerged as a biologically relevant post-translational mod...
AbstractBackgroundReactive oxygen species-mediated cysteine sulfenic acid modification has emerged a...
Cysteine residues oxidized to sulfinic acids (R-SO2H) are observed in many proteins. In fact, there...
Oxidation of cysteine to sulfenic acid has emerged as a biologically relevant post-translational mod...
Cysteine S-nitrosation and S-sulfination are naturally occurring post-translational modifications (P...
Cysteine S-nitrosation and S-sulfination are naturally occurring post-translational modifications (P...
The oxidation of protein cysteine residues represents significant posttranslational modifications th...
The oxidation of protein cysteine residues represents significant posttranslational modifications th...
The oxidation of protein cysteine residues represents significant posttranslational modifications th...
The oxidation of protein cysteine residues represents significant posttranslational modifications th...