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Dissecting the Roles of Mitochondrial Complex I Intermediate Assembly Complex Factors in the Biogenesis of Complex I

机译:解剖线粒体复合物I中间组装复合因子在复合物的生物发生中的作用

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Mitochondrial complex I harbors 7 mitochondrial and 38 nuclear-encoded subunits. Its biogenesis requires the assembly and integration of distinct intermediate modules, mediated by numerous assembly factors. The mitochondrial complex I intermediate assembly (MCIA) complex, containing assembly factors NDUFAF1, ECSIT, ACAD9, and TMEM126B, is required for building the intermediate ND2-module. The role of the MCIA complex and the involvement of other proteins in the biogenesis of this module is unclear. Cell knockout studies reveal that while each MCIA component is critical for complex I assembly, a hierarchy of stability exists centered on ACAD9. We also identify TMEM186 and COA1 as bona fide components of the MCIA complex with loss of either resulting in MCIA complex defects and reduced complex I assembly. TMEM186 enriches with newly translated ND3, and COA1 enriches with ND2. Our findings provide new functional insights into the essential nature of the MCIA complex in complex I assembly.
机译:线粒体复合体I哈尔本7线粒体和38个核编码亚基。它的生物发生要求由许多装配因子介导的不同中间模块的组装和整合。构建中间ND2模块需要大量组件NDUFAF1,ECSIT,ACAD9和TMEM126B所需的线粒体复合物I中间组件(MCIA)复合物。 MCIA复合物的作用和其他蛋白质在该模块的生物发生中的作用尚不清楚。细胞敲除研究表明,虽然每个MCIA组件对于复杂的I组件至关重要,但在ACAC9上以稳定性的阶级存在层次。我们还将TME186和CoA1识别为MCIA复合物的BONA FIDE组件,其中损失导致MCIA复杂缺陷和减少的I组装。 TMEM186与新翻译的ND3丰富,COA1丰富ND2。我们的调查结果为Complex I组装中的MCIA复合物的基本性提供了新的功能洞察。

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