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首页> 外文期刊>Molecular biology of the cell >COX19 mediates the transduction of a mitochondrial redox signal from SCO1 that regulates ATP7A-mediated cellular copper efflux
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COX19 mediates the transduction of a mitochondrial redox signal from SCO1 that regulates ATP7A-mediated cellular copper efflux

机译:COX19介导SCO1的线粒体氧化还原信号的转导,调节ATP7A介导的细胞铜外排

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摘要

SCO1 and SCO2 are metallochaperones whose principal function is to add two copper ions to the catalytic core of cytochrome c oxidase (COX). However, affected tissues of SCO1 and SCO2 patients exhibit a combined deficiency in COX activity and total copper content, suggesting additional roles for these proteins in the regulation of cellular copper homeostasis. Here we show that both the redox state of the copper-binding cysteines of SCO1 and the abundance of SCO2 correlate with cellular copper content and that these relationships are perturbed by mutations in SCO1 or SCO2, producing a state of apparent copper overload. The copper deficiency in SCO patient fibroblasts is rescued by knockdown of ATP7A, a trans-Golgi, copper-transporting ATPase that traffics to the plasma membrane during copper overload to promote efflux. To investigate how a signal from SCO1 could be relayed to ATP7A, we examined the abundance and subcellular distribution of several soluble COX assembly factors. We found that COX19 partitions between mitochondria and the cytosol in a copper-dependent manner and that its knockdown partially rescues the copper deficiency in patient cells. These results demonstrate that COX19 is necessary for the transduction of a SCO1-dependent mitochondrial redox signal that regulates ATP7A-mediated cellular copper efflux.
机译:SCO1和SCO2是金属伴侣素,其主要功能是向细胞色素C氧化酶(COX)的催化核心添加两个铜离子。但是,SCO1和SCO2患者的受影响组织在COX活性和总铜含量方面存在综合缺陷,表明这些蛋白在调节细胞内铜稳态方面还具有其他作用。在这里,我们显示SCO1的铜结合半胱氨酸的氧化还原状态和SCO2的丰度都与细胞中的铜含量相关,并且这些关系受到SCO1或SCO2突变的干扰,从而产生明显的铜超载状态。 SCO患者成纤维细胞中的铜缺乏症可通过敲低ATP7A(一种反高尔基体的铜转运ATPase)来挽救,该酶在铜超载期间转运到质膜以促进外排。要研究如何将来自SCO1的信号中继到ATP7A,我们研究了几种可溶性COX组装因子的丰度和亚细胞分布。我们发现,COX19以铜依赖的方式在线粒体和细胞质之间分配,其敲低可部分挽救患者细胞中的铜缺乏。这些结果表明,COX19对于SCO1依赖的线粒体氧化还原信号的转导是必需的,该信号调节ATP7A介导的细胞铜流出。

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