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首页> 外文期刊>EMBO reports >Mcp3 is a novel mitochondrial outer membrane protein that follows a unique IMP-dependent biogenesis pathway
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Mcp3 is a novel mitochondrial outer membrane protein that follows a unique IMP-dependent biogenesis pathway

机译:Mcp3是一种新型的线粒体外膜蛋白,遵循独特的IMP依赖性生物发生途径

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Mitochondria are separated from the remainder of the eukaryotic cell by the mitochondrial outer membrane (MOM). The MOM plays an important role in different transport processes like lipid trafficking and protein import. In yeast, the ER-mitochondria encounter structure (ERMES) has a central, but poorly defined role in both activities. To understand the functions of the ERMES, we searched for suppressors of the deficiency of one of its components, Mdm10, and identified a novel mitochondrial protein that we named Mdm10 complementing protein 3 (Mcp3). Mcp3 partially rescues a variety of ERMES-related phenotypes. We further demonstrate that Mcp3 is an integral protein of the MOM that follows a unique import pathway. It is recognized initially by the import receptor Tom70 and then crosses the MOM via the translocase of the outer membrane. Mcp3 is next relayed to the TIM23 translocase at the inner membrane, gets processed by the inner membrane peptidase (IMP) and finally integrates into the MOM. Hence, Mcp3 follows a novel biogenesis route where a MOM protein is processed by a peptidase of the inner membrane.
机译:线粒体外膜(MOM)将线粒体与真核细胞的其余部分分开。 MOM在脂质运输和蛋白质进口等不同的运输过程中起着重要作用。在酵母中,ER-线粒体相遇结构(ERMES)在这两种活动中均具有核心作用,但作用不明确。为了了解ERMES的功能,我们搜索了其组分之一Mdm10缺乏的抑制剂,并鉴定了一种新型的线粒体蛋白,我们将其命名为Mdm10互补蛋白3(Mcp3)。 Mcp3部分挽救了与ERMES相关的各种表型。我们进一步证明Mcp3是遵循独特的进口途径的MOM的必需蛋白。它最初被输入受体Tom70识别,然后通过外膜的转位酶穿过MOM。接下来,Mcp3在内膜传递到TIM23转位酶,被内膜肽酶(IMP)处理,最后整合到MOM中。因此,Mcp3遵循一种新颖的生物发生途径,其中MOM蛋白由内膜的肽酶处理。

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