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首页> 外文期刊>Molecular biology of the cell >A Highlights from MBoC Selection: Role of mitochondrial inner membrane organizing system in protein biogenesis of the mitochondrial outer membrane
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A Highlights from MBoC Selection: Role of mitochondrial inner membrane organizing system in protein biogenesis of the mitochondrial outer membrane

机译:MBoC选择的亮点:线粒体内膜组织系统在线粒体外膜蛋白质生物发生中的作用

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摘要

Mitochondria contain two membranes, the outer membrane and the inner membrane with folded cristae. The mitochondrial inner membrane organizing system (MINOS) is a large protein complex required for maintaining inner membrane architecture. MINOS interacts with both preprotein transport machineries of the outer membrane, the translocase of the outer membrane (TOM) and the sorting and assembly machinery (SAM). It is unknown, however, whether MINOS plays a role in the biogenesis of outer membrane proteins. We have dissected the interaction of MINOS with TOM and SAM and report that MINOS binds to both translocases independently. MINOS binds to the SAM complex via the conserved polypeptide transport–associated domain of Sam50. Mitochondria lacking mitofilin, the large core subunit of MINOS, are impaired in the biogenesis of β-barrel proteins of the outer membrane, whereas mutant mitochondria lacking any of the other five MINOS subunits import β-barrel proteins in a manner similar to wild-type mitochondria. We show that mitofilin is required at an early stage of β-barrel biogenesis that includes the initial translocation through the TOM complex. We conclude that MINOS interacts with TOM and SAM independently and that the core subunit mitofilin is involved in biogenesis of outer membrane β-barrel proteins.
机译:线粒体包含两个膜,外膜和内膜具有折叠的ista。线粒体内膜组织系统(MINOS)是维持内膜结构所需的大型蛋白质复合物。 MINOS与外膜的蛋白前转运机制,外膜的转位酶(TOM)和分选和组装机制(SAM)相互作用。然而,未知的是MINOS是否在外膜蛋白的生物发生中起作用。我们已经剖析了MINOS与TOM和SAM的相互作用,并报告了MINOS独立地结合到两个转位酶上。 MINOS通过保守的与多肽转运相关的Sam50结构域与SAM复合物结合。缺乏线粒体(MINOS的大核心亚基)的线粒体在外膜的β-barrel蛋白的生物发生中受损,而缺少其他5个MINOS亚基中的任何一个的突变线粒体以类似于野生型的方式输入β-barrel蛋白。线粒体。我们表明,米托菲林在β-桶生物发生的早期阶段就需要,这包括通过TOM复合体的初始转运。我们得出的结论是,MINOS独立地与TOM和SAM相互作用,并且核心亚单位丝裂蛋白与外膜β-桶形蛋白质的生物发生有关。

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