Reactive cysteine persulfides and S-polythiolation regulate oxidative stress and redox signaling

Tomoaki Ida(University of California, Los Angeles), Tomohiro Sawa(Japan Science and Technology Agency), Hideshi Ihara(Osaka Prefecture University), Yukihiro Tsuchiya(Showa Pharmaceutical University), Yasuo Watanabe(Showa Pharmaceutical University), Yoshito Kumagai(University of Tsukuba), Makoto Suematsu(Keio University), Hozumi Motohashi(Tohoku University), Shigemoto Fujii(University of California, Los Angeles), Tetsuro Matsunaga(University of California, Los Angeles), Masayuki Yamamoto(University of California, Los Angeles), Katsuhiko Ono(Sonoma State University), Nelmi O. Devarie‐Baez(Washington State University), Ming Xian(Washington State University), Jon M. Fukuto(Sonoma State University), Takaaki Akaike(University of California, Los Angeles)
Proceedings of the National Academy of Sciences
April 14, 2014
Cited by 913Open Access
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Abstract

Using methodology developed herein, it is found that reactive persulfides and polysulfides are formed endogenously from both small molecule species and proteins in high amounts in mammalian cells and tissues. These reactive sulfur species were biosynthesized by two major sulfurtransferases: cystathionine β-synthase and cystathionine γ-lyase. Quantitation of these species indicates that high concentrations of glutathione persulfide (perhydropersulfide >100 μM) and other cysteine persulfide and polysulfide derivatives in peptides/proteins were endogenously produced and maintained in the plasma, cells, and tissues of mammals (rodent and human). It is expected that persulfides are especially nucleophilic and reducing. This view was found to be the case, because they quickly react with H2O2 and a recently described biologically generated electrophile 8-nitroguanosine 3',5'-cyclic monophosphate. These results indicate that persulfides are potentially important signaling/effector species, and because H2S can be generated from persulfide degradation, much of the reported biological activity associated with H2S may actually be that of persulfides. That is, H2S may act primarily as a marker for the biologically active of persulfide species.


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