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首页> 外文期刊>Biochemical Society Transactions >Molecular architecture of the proton diode of cytochrome c oxidase.
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Molecular architecture of the proton diode of cytochrome c oxidase.

机译:细胞色素C氧化酶的质子二极管的分子结构。

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摘要

CytcO (cytochrome c oxidase) is a membrane-bound multisubunit protein which catalyses the reduction of O(2) to H(2)O. The reaction is arranged topographically so that the electrons and protons are taken from opposite sides of the membrane and, in addition, it is also linked to proton pumping across the membrane. Thus the CytcO moves an equivalent of two positive charges across the membrane per electron transferred to O(2). Proton transfer through CytcO must be controlled by the protein to prevent leaks, which would dissipate the proton electrochemical gradient that is maintained across the membrane. The molecular mechanism by which the protein controls the unidirectionality of proton-transfer (cf. proton diode) reactions and energetically links electron transfer to proton translocation is not known. This short review summarizes selected results from studies aimed at understanding this mechanism, and we discuss a possible mechanistic principle utilized by the oxidase to pump protons.
机译:Cytco(细胞色素C氧化酶)是一种膜结合的多亚基蛋白,可将O(2)的还原催化为H(2)O。 该反应在地形上排列,以使电子和质子从膜的相对侧取,此外,它也与整个膜上的质子泵送有关。 因此,Cytco在每个电子转移到O(2)的每个电子中的两个正电荷相当于两个正电荷。 质子通过Cytco的转移必须由蛋白质控制以防止泄漏,这将消除整个膜上维持的质子电化学梯度。 尚不清楚蛋白质控制质子转移(参见质子二极管)反应的单向性的分子机制并能够将电子转移与质子转移联系在一起。 这篇简短的评论总结了旨在理解这种机制的研究的选定结果,我们讨论了氧化酶用于泵质质子的可能的机械原理。

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