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首页> 外文期刊>eLife journal >Independent evolution of functionally exchangeable mitochondrial outer membrane import complexes
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Independent evolution of functionally exchangeable mitochondrial outer membrane import complexes

机译:功能可交换的线粒体外膜导入复合物的独立进化

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Assembly and/or insertion of a subset of mitochondrial outer membrane (MOM) proteins, including subunits of the main MOM translocase, require the fungi-specific Mim1/Mim2 complex. So far it was unclear which proteins accomplish this task in other eukaryotes. Here, we show by reciprocal complementation that the MOM protein pATOM36 of trypanosomes is a functional analogue of yeast Mim1/Mim2 complex, even though these proteins show neither sequence nor topological similarity. Expression of pATOM36 rescues almost all growth, mitochondrial biogenesis, and morphology defects in yeast cells lacking Mim1 and/or Mim2. Conversely, co-expression of Mim1 and Mim2 restores the assembly and/or insertion defects of MOM proteins in trypanosomes ablated for pATOM36. Mim1/Mim2 and pATOM36 form native-like complexes when heterologously expressed, indicating that additional proteins are not part of these structures. Our findings indicate that Mim1/Mim2 and pATOM36 are the products of convergent evolution and arose only after the ancestors of fungi and trypanosomatids diverged.
机译:线粒体外膜(MOM)蛋白子集的组装和/或插入,包括主要的MOM转位酶的亚基,都需要真菌特异性Mim1 / Mim2复合物。到目前为止,尚不清楚其他真核生物中哪些蛋白质可以完成此任务。在这里,我们通过相互互补来证明锥虫的MOM蛋白pATOM36是酵母Mim1 / Mim2复合体的功能类似物,即使这些蛋白既不显示序列也不显示拓扑相似性。在缺少Mim1和/或Mim2的酵母细胞中,pATOM36的表达可挽救几乎所有的生长,线粒体生物发生和形态缺陷。相反,Mim1和Mim2的共表达可恢复被pATOM36消融的锥虫中MOM蛋白的装配和/或插入缺陷。当异源表达时,Mim1 / Mim2和pATOM36形成类似天然的复合物,表明其他蛋白质不属于这些结构。我们的发现表明,Mim1 / Mim2和pATOM36是融合进化的产物,仅在真菌和锥虫的祖先分开后才出现。

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