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TIMMDC1/C3orf1 Functions as a Membrane-Embedded Mitochondrial Complex I Assembly Factor through Association with the MCIA Complex

机译:TIMMDC1 / C3orf1通过与MCIA复合体结合而充当膜嵌入式线粒体复合体I装配因子

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摘要

Complex I (CI) of the electron transport chain, a large membrane-embedded NADH dehydrogenase, couples electron transfer to the release of protons into the mitochondrial inner membrane space to promote ATP production through ATP synthase. In addition to being a central conduit for ATP production, CI activity has been linked to neurodegenerative disorders, including Parkinson's disease. CI is built in a stepwise fashion through the actions of several assembly factors. We employed interaction proteomics to interrogate the molecular associations of 15 core subunits and assembly factors previously linked to human CI deficiency, resulting in a network of 101 proteins and 335 interactions (edges). TIMMDC1, a predicted 4-pass membrane protein, reciprocally associated with multiple members of the MCIA CI assembly factor complex and core CI subunits and was localized in the mitochondrial inner membrane, and its depletion resulted in reduced CI activity and cellular respiration. Quantitative proteomics demonstrated a role for TIMMDC1 in assembly of membrane-embedded and soluble arms of the complex. This study defines a new membrane-embedded CI assembly factor and provides a resource for further analysis of CI biology.
机译:电子传输链的复合物I(CI)是一种大型的膜嵌入NADH脱氢酶,将电子转移与质子释放到线粒体内膜空间中耦合,从而促进通过ATP合酶的ATP产生。除了作为产生ATP的主要途径外,CI活性还与包括帕金森氏症在内的神经退行性疾病有关。 CI是通过多个组装因子的作用以逐步方式构建的。我们使用相互作用蛋白质组学来询问以前与人类CI缺乏相关的15个核心亚基和装配因子的分子缔合,从而形成101个蛋白质和335个相互作用(边缘)的网络。 TIMMDC1是一种预测的4遍膜蛋白,与MCIA CI装配因子复合物和核心CI亚基的多个成员相互关联,并位于线粒体内膜中,其消耗导致CI活性和细胞呼吸减少。定量蛋白质组学证明了TIMMDC1在组装膜嵌入和可溶性复合物臂中的作用。这项研究定义了一个新的膜嵌入CI组装因子,并提供了进一步分析CI生物学的资源。

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