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首页> 外文期刊>Antioxidants and redox signalling >Redox and reactive oxygen species regulation of mitochondrial cytochrome C oxidase biogenesis
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Redox and reactive oxygen species regulation of mitochondrial cytochrome C oxidase biogenesis

机译:线粒体细胞色素C氧化酶生物合成的氧化还原和活性氧调节

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摘要

Significance: Cytochrome c oxidase (COX), the last enzyme of the mitochondrial respiratory chain, is the major oxygen consumer enzyme in the cell. COX biogenesis involves several redox-regulated steps. The process is highly regulated to prevent the formation of pro-oxidant intermediates. Recent Advances: Regulation of COX assembly involves several reactive oxygen species and redox-regulated steps. These include: (i) Intricate redox-controlled machineries coordinate the expression of COX isoenzymes depending on the environmental oxygen concentration. (ii) COX is a heme A-copper metalloenzyme. COX copper metallation involves the copper chaperone Cox17 and several other recently described cysteine-rich proteins, which are oxidatively folded in the mitochondrial intermembrane space. Copper transfer to COX subunits 1 and 2 requires concomitant transfer of redox power. (iii) To avoid the accumulation of reactive assembly intermediates, COX is regulated at the translational level to minimize synthesis of the heme A-containing Cox1 subunit when assembly is impaired. Critical Issues: An increasing number of regulatory pathways converge to facilitate efficient COX assembly, thus preventing oxidative stress. Future Directions: Here we will review on the redox-regulated COX biogenesis steps and will discuss their physiological relevance. Forthcoming insights into the precise regulation of mitochondrial COX biogenesis in normal and stress conditions will likely open future perspectives for understanding mitochondrial redox regulation and prevention of oxidative stress. Antioxid. Redox Signal. 19, 1940-1952.
机译:意义:细胞色素c氧化酶(COX)是线粒体呼吸链的最后一种酶,是细胞中主要的耗氧酶。 COX生物发生涉及几个氧化还原调节步骤。严格控制该过程以防止促氧化剂中间体的形成。最新进展:调节COX组装涉及多个活性氧和氧化还原调节步骤。其中包括:(i)复杂的氧化还原控制的机器根据环境氧浓度协调COX同工酶的表达。 (ii)COX是血红素A铜金属酶。 COX铜金属化涉及铜伴侣Cox17和其他一些最近描述的富含半胱氨酸的蛋白质,这些蛋白质在线粒体膜间空间被氧化折叠。铜转移至COX子单元1和2需要同时转移氧化还原功率。 (iii)为避免反应性组装中间体的积累,在组装过程中将COX调节在翻译水平上,以最大程度地减少含血红素A的Cox1亚基的合成。关键问题:越来越多的调节途径汇聚在一起,以促进有效的COX组装,从而防止氧化应激。未来方向:在这里,我们将回顾氧化还原调节的COX生物发生步骤,并讨论它们的生理相关性。即将出现的关于正常和压力条件下线粒体COX生物发生的精确调控的见解可能会为理解线粒体氧化还原调节和预防氧化应激的未来打开广阔的前景。抗氧化。氧化还原信号。 19,1940-1952。

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