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Loop recognition and copper-mediated disulfide reduction underpin metal site assembly of CuA in human cytochrome oxidase

机译:在人类细胞色素氧化酶中铜的环识别和铜介导的二硫键还原支撑金属位点组装

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摘要

Maturation of cytochrome oxidases is a complex process requiring assembly of several subunits and adequate uptake of the metal cofactors. Two orthologous Sco proteins (Sco1 and Sco2) are essential for the correct assembly of the dicopper CuA site in the human oxidase, but their function is not fully understood. Here, we report an in vitro biochemical study that shows that Sco1 is a metallochaperone that selectively transfers Cu(I) ions based on loop recognition, whereas Sco2 is a copper-dependent thiol reductase of the cysteine ligands in the oxidase. Copper binding to Sco2 is essential to elicit its redox function and as a guardian of the reduced state of its own cysteine residues in the oxidizing environment of the mitochondrial intermembrane space (IMS). These results provide a detailed molecular mechanism for CuA assembly, suggesting that copper and redox homeostasis are intimately linked in the mitochondrion.
机译:细胞色素氧化酶的成熟是一个复杂的过程,需要组装多个亚基并充分摄取金属辅因子。两种直系同源的Sco蛋白(Sco1和Sco2)对于在人类氧化酶中正确组装双铜CuA位点是必不可少的,但它们的功能尚不完全清楚。在这里,我们报告了一项体外生化研究,表明Sco1是金属环蛋白,可基于环识别选择性转移Cu(I)离子,而Sco2是氧化酶中半胱氨酸配体的铜依赖性硫醇还原酶。铜与Sco2的结合对于引发其氧化还原功能以及在线粒体膜间空间(IMS)的氧化环境中作为其自身半胱氨酸残基的还原状态的保护者而言至关重要。这些结果为CuA组装提供了详细的分子机制,表明铜和氧化还原稳态在线粒体中紧密相连。

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