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The Conserved Mitochondrial Twin Cx9C Protein Cmc2 Is a Cmc1 Homologue Essential for Cytochrome c Oxidase Biogenesis*

机译:保守的线粒体孪生Cx9C蛋白Cmc2是细胞色素c氧化酶生物发生所必需的Cmc1同源物*

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摘要

Mitochondrial copper metabolism and delivery to cytochrome c oxidase and mitochondrially localized CuZn-superoxide dismutase (Sod1) requires a growing number of intermembrane space proteins containing a twin Cx9C motif. Among them, Cmc1 was recently identified by our group. Here we describe another conserved mitochondrial metallochaperone-like protein, Cmc2, a close homologue of Cmc1, whose function affects both cytochrome c oxidase and Sod1. In the yeast Saccharomyces cerevisiae, Cmc2 localizes to the mitochondrial inner membrane facing the intermembrane space. In the absence of Cmc2, cytochrome c oxidase activity measured spectrophotometrically and cellular respiration measured polarographically are undetectable. Additionally, mutant cmc2 cells display 2-fold increased mitochondrial Sod1 activity, whereas CMC2 overexpression results in Sod1 activity decreased to 60% of wild-type levels. CMC1 overexpression does not rescue the respiratory defect of cmc2 mutants or vice versa. However, Cmc2 physically interacts with Cmc1 and the absence of Cmc2 induces a 5-fold increase in Cmc1 accumulation in the mitochondrial membranes. Cmc2 function is conserved from yeast to humans. Human CMC2 localizes to the mitochondria and CMC2 expression knockdown produces cytochrome c oxidase deficiency in Caenorhabditis elegans. We conclude that Cmc1 and Cmc2 have cooperative but nonoverlapping functions in cytochrome c oxidase biogenesis.
机译:线粒体铜代谢并传递到细胞色素C氧化酶和线粒体定位的CuZn超氧化物歧化酶(Sod1)需要越来越多的包含双Cx9C模序的膜间空间蛋白。其中,Cmc1最近被我们小组鉴定。在这里,我们描述了另一个保守的线粒体金属伴侣蛋白样蛋白Cmc2,它是Cmc1的紧密同源物,其功能影响细胞色素c氧化酶和Sod1。在酵母酿酒酵母中,Cmc2定位于面对膜间空间的线粒体内膜。在没有Cmc2的情况下,分光光度法测定的细胞色素C氧化酶活性和极谱法测定的细胞呼吸均无法检测到。此外,突变的cmc2细胞显示线粒体Sod1活性增加了2倍,而CMC2过表达导致Sod1活性降低到野生型水平的60%。 CMC1过表达不能挽救cmc2突变体的呼吸缺陷,反之亦然。但是,Cmc2在物理上与Cmc1相互作用,而Cmc2的缺失会导致线粒体膜中Cmc1积累增加5倍。 Cmc2功能从酵母到人类都是保守的。人CMC2定位于线粒体,而CMC2表达的敲低在秀丽隐杆线虫中产生细胞色素c氧化酶缺乏症。我们的结论是Cmc1和Cmc2在细胞色素C氧化酶的生物发生中具有合作但不重叠的功能。

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