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Evidence for the association of yeast mitochondrial ribosomes with Cox11p, a protein required for the CuB site formation of cytochrome c oxidase

机译:酵母线粒体核糖体与Cox11p结合的证据,Cox11p是细胞色素c氧化酶的CuB 位点形成所必需的蛋白质

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摘要

Cytochrome c oxidase is the terminal enzyme of the mitochondrial (mt) respiratory chain. It contains copper ions, which are organized in two centres, CuA and CuB. The CuA site of subunit Cox2p is exposed to the mt intermembrane space, while the CuB site of subunit Cox1p is buried in the inner mt membrane. Incorporation of copper into the two centres is crucial for the assembly and activity of the enzyme. Formation of the CuB site is dependent on Cox11p, a copper-binding protein of the mt inner membrane. Here, we experimentally prove that Cox11p possesses a Nin–Cout topology, with the C-terminal copper-binding domain exposed in the mt intermembrane space. Furthermore, we provide evidence for the association of Cox11p with the mt translation machinery. We propose a model in which the CuB site is co-translationally formed by a transient interaction between Cox11p and the nascent Cox1p in the intermembrane space.
机译:细胞色素c氧化酶是线粒体(mt)呼吸链的末端酶。它包含铜离子,它们组织在两个中心CuA 和CuB 中。 Cox2p亚基的CuA 位点暴露于mt膜间空间,而Cox1p亚基的CuB 位点埋在mt膜内部。将铜掺入两个中心对于酶的组装和活性至关重要。 CuB 位点的形成取决于mt内膜的铜结合蛋白Cox11p。在这里,我们通过实验证明Cox11p具有Nin –Cout 拓扑,其C端铜结合域暴露在mt膜空间中。此外,我们为Cox11p与mt翻译机制的关联提供了证据。我们提出了一个模型,其中CuB 位点是通过膜间空间中Cox11p和新生Cox1p之间的瞬时相互作用而共翻译形成的。

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