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高度分化的锥虫 MICOS 复合物组织在一个非必需的完整膜和一个必需的外围模块中。

The highly diverged trypanosomal MICOS complex is organized in a nonessential integral membrane and an essential peripheral module.

机构信息

Department of Chemistry and Biochemistry, University of Bern, Freiestrasse 3, Bern, CH-3012, Switzerland.

Department of Biochemistry and Functional Proteomics, Faculty of Biology, University of Freiburg, Freiburg, 79104, Germany.

出版信息

Mol Microbiol. 2019 Dec;112(6):1731-1743. doi: 10.1111/mmi.14389. Epub 2019 Oct 3.

Abstract

The mitochondrial contact site and cristae organization system (MICOS) mediates the formation of cristae, invaginations in the mitochondrial inner membrane. The highly diverged MICOS complex of the parasitic protist Trypanosoma brucei consists of nine subunits. Except for two Mic10-like and a Mic60-like protein, all subunits are specific for kinetoplastids. Here, we determined on a proteome-wide scale how ablation of individual MICOS subunits affects the levels of the other subunits. The results reveal co-regulation of TbMic10-1, TbMic10-2, TbMic16 and TbMic60, suggesting that these nonessential, integral inner membrane proteins form an interdependent network. Moreover, the ablation of TbMic34 and TbMic32 reveals another network consisting of the essential, intermembrane space-localized TbMic20, TbMic32, TbMic34 and TbMic40, all of which are peripherally associated with the inner membrane. The downregulation of TbMic20, TbMic32 and TbMic34 also interferes with mitochondrial protein import and reduces the size of the TbMic10-containing complexes. Thus, the diverged MICOS of trypanosomes contains two subcomplexes: a nonessential membrane-integrated one, organized around the conserved Mic10 and Mic60, that mediates cristae formation, and an essential membrane-peripheral one consisting of four kinetoplastid-specific subunits, that is required for import of intermembrane space proteins.

摘要

线粒体接触和嵴组织系统 (MICOS) 介导嵴的形成,即线粒体内膜的内陷。寄生原生动物布鲁氏锥虫高度分化的 MICOS 复合物由九个亚基组成。除了两个 Mic10 样和一个 Mic60 样蛋白外,所有亚基都是动基体生物所特有的。在这里,我们在蛋白质组范围内确定了单个 MICOS 亚基的缺失如何影响其他亚基的水平。结果表明 TbMic10-1、TbMic10-2、TbMic16 和 TbMic60 的共调控,表明这些非必需的、整合在内膜上的蛋白质形成一个相互依赖的网络。此外,TbMic34 和 TbMic32 的缺失揭示了另一个由必需的、位于膜间空间的 TbMic20、TbMic32、TbMic34 和 TbMic40 组成的网络,它们都与内膜的外周相关。TbMic20、TbMic32 和 TbMic34 的下调也干扰了线粒体蛋白的输入,并减少了含有 TbMic10 的复合物的大小。因此,分化的锥虫 MICOS 包含两个亚复合物:一个非必需的膜整合亚复合物,围绕保守的 Mic10 和 Mic60 组织,介导嵴的形成,以及一个必需的膜外周亚复合物,由四个动基体生物特异性亚基组成,是膜间空间蛋白输入所必需的。

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