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C11orf83,一种参与bc1复合体组装和超复合体稳定的线粒体心磷脂结合蛋白。

C11orf83, a mitochondrial cardiolipin-binding protein involved in bc1 complex assembly and supercomplex stabilization.

作者信息

Desmurs Marjorie, Foti Michelangelo, Raemy Etienne, Vaz Frédéric Maxime, Martinou Jean-Claude, Bairoch Amos, Lane Lydie

机构信息

Department of Human Protein Sciences, University of Geneva, Geneva, Switzerland

Department of Cell Physiology and Metabolism, University of Geneva, Geneva, Switzerland.

出版信息

Mol Cell Biol. 2015 Apr;35(7):1139-56. doi: 10.1128/MCB.01047-14. Epub 2015 Jan 20.

Abstract

Mammalian mitochondria may contain up to 1,500 different proteins, and many of them have neither been confidently identified nor characterized. In this study, we demonstrated that C11orf83, which was lacking experimental characterization, is a mitochondrial inner membrane protein facing the intermembrane space. This protein is specifically associated with the bc1 complex of the electron transport chain and involved in the early stages of its assembly by stabilizing the bc1 core complex. C11orf83 displays some overlapping functions with Cbp4p, a yeast bc1 complex assembly factor. Therefore, we suggest that C11orf83, now called UQCC3, is the functional human equivalent of Cbp4p. In addition, C11orf83 depletion in HeLa cells caused abnormal crista morphology, higher sensitivity to apoptosis, a decreased ATP level due to impaired respiration and subtle, but significant, changes in cardiolipin composition. We showed that C11orf83 binds to cardiolipin by its α-helices 2 and 3 and is involved in the stabilization of bc1 complex-containing supercomplexes, especially the III2/IV supercomplex. We also demonstrated that the OMA1 metalloprotease cleaves C11orf83 in response to mitochondrial depolarization, suggesting a role in the selection of cells with damaged mitochondria for their subsequent elimination by apoptosis, as previously described for OPA1.

摘要

哺乳动物的线粒体可能含有多达1500种不同的蛋白质,其中许多蛋白质尚未得到确切鉴定和表征。在本研究中,我们证明了缺乏实验表征的C11orf83是一种面向膜间隙的线粒体内膜蛋白。该蛋白与电子传递链的bc1复合体特异性相关,并通过稳定bc1核心复合体参与其组装的早期阶段。C11orf83与酵母bc1复合体组装因子Cbp4p具有一些重叠功能。因此,我们认为现在称为UQCC3的C11orf83是Cbp4p在人类中的功能等效物。此外,HeLa细胞中C11orf83的缺失导致嵴形态异常、对凋亡的敏感性增加、由于呼吸受损导致ATP水平降低以及心磷脂组成发生细微但显著的变化。我们表明,C11orf83通过其α螺旋2和3与心磷脂结合,并参与含bc1复合体的超复合体的稳定,特别是III2/IV超复合体。我们还证明,OMA1金属蛋白酶在响应线粒体去极化时切割C11orf83,这表明其在选择受损线粒体的细胞以便随后通过凋亡进行清除中发挥作用,如先前对OPA1的描述。

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