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窥探 TOM 复合物——进入线粒体的多样入口为真核生物的演化提供了新视角。

Peeping at TOMs-Diverse Entry Gates to Mitochondria Provide Insights into the Evolution of Eukaryotes.

机构信息

Department of Chemistry and Biochemistry, University of Bern, Bern, Switzerland.

Institut für Biochemie und Molekularbiologie, ZBMZ and BIOSS Centre for Biological Signalling Studies, Universität Freiburg, Freiburg, Germany.

出版信息

Mol Biol Evol. 2016 Feb;33(2):337-51. doi: 10.1093/molbev/msv219. Epub 2015 Oct 15.

Abstract

Mitochondria are essential for eukaryotic life and more than 95% of their proteins are imported as precursors from the cytosol. The targeting signals for this posttranslational import are conserved in all eukaryotes. However, this conservation does not hold true for the protein translocase of the mitochondrial outer membrane that serves as entry gate for essentially all precursor proteins. Only two of its subunits, Tom40 and Tom22, are conserved and thus likely were present in the last eukaryotic common ancestor. Tom7 is found in representatives of all supergroups except the Excavates. This suggests that it was added to the core of the translocase after the Excavates segregated from all other eukaryotes. A comparative analysis of the biochemically and functionally characterized outer membrane translocases of yeast, plants, and trypanosomes, which represent three eukaryotic supergroups, shows that the receptors that recognize the conserved import signals differ strongly between the different systems. They present a remarkable example of convergent evolution at the molecular level. The structural diversity of the functionally conserved import receptors therefore provides insight into the early evolutionary history of mitochondria.

摘要

线粒体对于真核生物的生命至关重要,其超过 95%的蛋白质都是以前体的形式从细胞质中输入的。这种翻译后输入的靶向信号在所有真核生物中都是保守的。然而,对于作为基本所有前体蛋白进入入口的线粒体外膜蛋白移位酶来说,这种保守性并不成立。它只有两个亚基,Tom40 和 Tom22 是保守的,因此很可能存在于最后一个真核生物的共同祖先中。Tom7 存在于除挖掘生物门以外的所有超类群的代表中。这表明它是在挖掘生物门与所有其他真核生物分离后被添加到移位酶的核心中的。对代表三个真核超类群的酵母、植物和原生动物的生化和功能特征已鉴定的外膜移位酶进行的比较分析表明,识别保守输入信号的受体在不同系统之间差异很大。这在分子水平上展示了趋同进化的显著例子。因此,功能保守的输入受体的结构多样性为线粒体的早期进化历史提供了深入了解。

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