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A disulfide bond in the TIM23 complex is crucial for voltage gating and mitochondrial protein import

机译:TIM23复合物中的二硫键对于电压门控和线粒体蛋白质进口至关重要

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摘要

Tim17 is a central, membrane-embedded subunit of the mitochondrial protein import machinery. In this study, we show that Tim17 contains a pair of highly conserved cysteine residues that form a structural disulfide bond exposed to the intermembrane space (IMS). This disulfide bond is critical for efficient protein translocation through the TIM23 complex and for dynamic gating of its preprotein-conducting channel. The disulfide bond in Tim17 is formed during insertion of the protein into the inner membrane. Whereas the import of Tim17 depends on the binding to the IMS protein Mia40, the oxidoreductase activity of Mia40 is surprisingly dispensable for Tim17 oxidation. Our observations suggest that Tim17 can be directly oxidized by the sulfhydryl oxidase Erv1. Thus, import and oxidation of Tim17 are mediated by the mitochondrial disulfide relay, though the mechanism by which the disulfide bond in Tim17 is formed differs considerably from that of soluble IMS proteins.
机译:Tim17是线粒体蛋白质进口机械的中央膜嵌入亚基。在本研究中,我们表明TIM17含有一对高度保守的半胱氨酸残基,其形成暴露于膜间空间(IMS)的结构二硫键。这种二硫键对于通过Tim23复合物的有效蛋白质易位和其预蛋白传导通道的动态栅致动态至关重要。在将蛋白质插入内膜期间形成TIM17中的二硫键。虽然Tim17的进口取决于与IMS蛋白MIA40的结合,但MIA40的氧化还原酶活性令人惊讶地分配TIM17氧化。我们的观察结果表明,Tim17可以通过巯基氧化酶ERV1直接氧化。因此,TiM17的进口和氧化由线粒体二硫化物继电器介导,但是由TIM17中的二硫键形成的机制与可溶性IMS蛋白的二硫键不同。

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