Molecular Mechanisms of Glutaredoxin Enzymes: Versatile Hubs for Thiol–Disulfide Exchange between Protein Thiols and Glutathione

谷胱甘肽 谷胱甘肽 化学 氧化还原 生物化学 硫醇 半胱氨酸 背景(考古学) 谷胱甘肽二硫化物 蛋白质二硫键异构酶 信号转导 生物 古生物学 有机化学
作者
Zhiguang Xiao,Sharon La Fontaine,Ashley I. Bush,Anthony G. Wedd
出处
期刊:Journal of Molecular Biology [Elsevier]
卷期号:431 (2): 158-177 被引量:77
标识
DOI:10.1016/j.jmb.2018.12.006
摘要

The tripeptide glutathione (GSH) and its oxidized form glutathione disulfide (GSSG) constitute a key redox couple in cells. In particular, they partner protein thiols in reversible thiol-disulfide exchange reactions that act as switches in cell signaling and redox homeostasis. Disruption of these processes may impair cellular redox signal transduction and induce redox misbalances that are linked directly to aging processes and to a range of pathological conditions including cancer, cardiovascular diseases and neurological disorders. Glutaredoxins are a class of GSH-dependent oxidoreductase enzymes that specifically catalyze reversible thiol-disulfide exchange reactions between protein thiols and the abundant thiol pool GSSG/GSH. They protect protein thiols from irreversible oxidation, regulate their activities under a variety of cellular conditions and are key players in cell signaling and redox homeostasis. On the other hand, they may also function as metal-binding proteins with a possible role in the cellular homeostasis and metabolism of essential metals copper and iron. However, the molecular basis and underlying mechanisms of glutaredoxin action remain elusive in many situations. This review focuses specifically on these aspects in the context of recent developments that illuminate some of these uncertainties.
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