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首页> 外文期刊>The Journal of biological chemistry >Role of Twin Cys-Xaa9-Cys Motif Cysteines in Mitochondrial Import of the Cytochrome c Oxidase Biogenesis Factor Cmc1
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Role of Twin Cys-Xaa9-Cys Motif Cysteines in Mitochondrial Import of the Cytochrome c Oxidase Biogenesis Factor Cmc1

机译:双Cys-XAA9-CYS主题半胱氨酸在细胞色素C氧化酶生物生成因子CMC1中的作用

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The Mia40 import pathway facilitates the import and oxidative folding of cysteine-rich protein substrates into the mitochondrial intermembrane space. Here we describe the in vitro and in organello oxidative folding of Cmc1, a twin CX9C-containing substrate, which contains an unpaired cysteine. In vitro, Cmc1 can be oxidized by the import receptor Mia40 alone when in excess or at a lower rate by only the sulfhydryl oxidase Erv1. However, physiological and efficient Cmc1 oxidation requires Erv1 and Mia40. Cmc1 forms a stable intermediate with Mia40 and is released from this interaction in the presence of Erv1. The three proteins are shown to form a ternary complex in mitochondria. Our results suggest that this mechanism facilitates efficient formation of multiple disulfides and prevents the formation of non-native disulfide bonds.
机译:MIA40进口途径有利于将富含半胱氨酸的富含蛋白质基质的进口和氧化折叠到线粒体膜间空间中。在这里,我们描述了CMC1的体外氧化折叠,含有双CX9C的底物,其含有未配对的半胱氨酸。在体外,在仅通过仅通过巯基氧化酶ERV1的过量或以较低的速率而单独使用进口受体MIA40可以通过进口受体MIA40氧化CMC1。然而,生理学和有效的CMC1氧化需要ERV1和MIA40。 CMC1与MIA40形成稳定的中间体,并在ERV1存在下从该相互作用中释放。显示三种蛋白质在线粒体中形成三元复合物。我们的研究结果表明,该机制有助于有效地形成多硫化物并防止形成非天然二硫键。

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