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线粒体巯基在抗氧化保护和氧化还原信号中的作用:谷胱甘肽化和其他巯基修饰的不同作用。

Mitochondrial thiols in antioxidant protection and redox signaling: distinct roles for glutathionylation and other thiol modifications.

机构信息

MRC Mitochondrial Biology Unit, Cambridge, United Kingdom.

出版信息

Antioxid Redox Signal. 2012 Mar 15;16(6):476-95. doi: 10.1089/ars.2011.4289. Epub 2011 Dec 20.

Abstract

SIGNIFICANCE

The mitochondrial matrix contains much of the machinery at the heart of metabolism. This compartment is also exposed to a high and continual flux of superoxide, hydrogen peroxide, and related reactive species. To protect mitochondria from these sources of oxidative damage, there is an integrated set of thiol systems within the matrix comprising the thioredoxin/peroxiredoxin/methionine sulfoxide reductase pathways and the glutathione/glutathione peroxidase/glutathione-S-transferase/glutaredoxin pathways that in conjunction with protein thiols prevent much of this oxidative damage. In addition, the changes in the redox state of many components of these mitochondrial thiol systems may transduce and relay redox signals within and through the mitochondrial matrix to modulate the activity of biochemical processes.

RECENT ADVANCES

Here, mitochondrial thiol systems are reviewed, and areas of uncertainty are pointed out, focusing on recent developments in our understanding of their roles.

CRITICAL ISSUES

The areas of particular focus are on the multiple, overlapping roles of mitochondrial thiols and on understanding how these thiols contribute to both antioxidant defenses and redox signaling.

FUTURE DIRECTIONS

Recent technical progress in the identification and quantification of thiol modifications by redox proteomics means that many of the questions raised about the multiple roles of mitochondrial thiols can now be addressed.

摘要

意义

线粒体基质包含代谢核心的大部分机制。该隔室还暴露于高且持续不断的超氧化物、过氧化氢和相关反应性物质的通量中。为了保护线粒体免受这些氧化损伤源的影响,基质中有一套集成的硫醇系统,包括硫氧还蛋白/过氧化物酶/蛋氨酸亚砜还原酶途径和谷胱甘肽/谷胱甘肽过氧化物酶/谷胱甘肽-S-转移酶/谷胱甘肽还原酶途径,这些途径与蛋白硫醇一起防止大部分氧化损伤。此外,这些线粒体硫醇系统的许多成分的氧化还原状态的变化可能在传递和中继线粒体基质内和通过线粒体基质的氧化还原信号,以调节生化过程的活性。

最近的进展

本文综述了线粒体硫醇系统,并指出了不确定的领域,重点是我们对其作用的理解的最新进展。

关键问题

特别关注的领域是线粒体硫醇的多种重叠作用,以及理解这些硫醇如何为抗氧化防御和氧化还原信号传导做出贡献。

未来方向

通过氧化还原蛋白质组学鉴定和定量硫醇修饰的最新技术进展意味着,现在可以解决关于线粒体硫醇的多种作用的许多问题。

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