S-sulfhydration as a cellular redox regulation

化学 氧化还原 硫黄 半胱氨酸 硫化氢 硫醇 生物化学 半胱氨酸代谢 线粒体 活性氧 生物发生 有机化学 基因
作者
Małgorzata Iciek,Danuta Kowalczyk‐Pachel,Anna Bilska‐Wilkosz,Inga Kwiecień,Magdalena Górny,Lidia Włodek
出处
期刊:Bioscience Reports [Portland Press]
卷期号:36 (2) 被引量:75
标识
DOI:10.1042/bsr20150147
摘要

For many years reactive oxygen and nitrogen species (ROS and RNS) have been recognized as key messengers in the process of thiol-based redox regulation. Relatively recently, literature reports began to mention reactive sulfur species (RSS) and their role in thiol regulation. This review is focused on biogenesis and biological properties of RSS, including: hydropersulfides, polysulfides and hydrogen sulfide (H2S). Based on the most up-to-date literature data, the paper presents biological significance of S-sulfhydration process. In this reaction, sulfane sulfur is transferred to the-SH groups forming hydropersulfides. Protein cysteine residues, called 'redox switches' are susceptible to such reversible modifications. In line with the most recent reports, it was emphasized that sulfane sulfur-containing compounds (mainly hydrogen persulfides and polysulfides) are real and better mediators of S-sulfhydration-based signalling than H2S. We also overviewed proteins participating in the formation and transport of RSS and in mitochondrial H2S oxidation. In addition, we reviewed many reports about proteins unrelated to sulfur metabolism which are modified by S-sulfhydration that influences their catalytic activity. We also addressed the problem of the regulatory function of S-sulfhydration reaction in the activation of KATP channels (vasorelaxant) and transcription factors (e.g. NFκB) as well as in the mechanism of therapeutic action of garlic-derived sulfur compounds. Some aspects of comparison between RNS and RSS are also discussed in this review.
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