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H₂S-Mediated Protein S-Sulfhydration: A Prediction for Its Formation and Regulation.


ABSTRACT: Protein S-sulfhydration is a newly discovered post-translational modification of specific cysteine residue(s) in target proteins, which is involved in a broad range of cellular functions and metabolic pathways. By changing local conformation and the final activity of target proteins, S-sulfhydration is believed to mediate most cellular responses initiated by H₂S, a novel gasotransmitter. In comparison to protein S-sulfhydration, nitric oxide-mediated protein S-nitrosylation has been extensively investigated, including its formation, regulation, transfer and metabolism. Although the investigation on the regulatory mechanisms associated with protein S-sulfhydration is still in its infancy, accumulated evidence suggested that protein S-sulfhydration may share similar chemical features with protein S-nitrosylation. Glutathione persulfide acts as a major donor for protein S-sulfhydration. Here, we review the present knowledge on protein S-sulfhydration, and also predict its formation and regulation mechanisms based on the knowledge from protein S-nitrosylation.

SUBMITTER: Ju Y 

PROVIDER: S-EPMC6152389 | biostudies-literature | 2017 Aug

REPOSITORIES: biostudies-literature

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H₂S-Mediated Protein S-Sulfhydration: A Prediction for Its Formation and Regulation.

Ju Youngjun Y   Fu Ming M   Stokes Eric E   Wu Lingyun L   Yang Guangdong G  

Molecules (Basel, Switzerland) 20170811 8


Protein <i>S</i>-sulfhydration is a newly discovered post-translational modification of specific cysteine residue(s) in target proteins, which is involved in a broad range of cellular functions and metabolic pathways. By changing local conformation and the final activity of target proteins, <i>S</i>-sulfhydration is believed to mediate most cellular responses initiated by H₂S, a novel gasotransmitter. In comparison to protein <i>S</i>-sulfhydration, nitric oxide-mediated protein <i>S</i>-nitrosy  ...[more]

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