Hewitt Victoria, Alcock Felicity, Lithgow Trevor
Department of Biochemistry & Molecular Biology, Monash University, Clayton Campus, Melbourne 3800, Australia.
Biochim Biophys Acta. 2011 Mar;1808(3):947-54. doi: 10.1016/j.bbamem.2010.07.019. Epub 2010 Jul 24.
Bacterial endosymbionts gave rise to mitochondria in a process that depended on the acquisition of protein import pathways. Modification and in some cases major re-tooling of the endosymbiont's cellular machinery produced these pathways, establishing mitochondria as organelles common to all eukaryotic cells. The legacy of this evolutionary tinkering can be seen in the homologies and structural similarities between mitochondrial protein import machinery and modern day bacterial proteins. Comparative analysis of these systems is revealing both possible routes for the evolution of the mitochondrial membrane translocases and a greater understanding of the mechanisms behind mitochondrial protein import. This article is part of a Special Issue entitled Protein translocation across or insertion into membranes.
细菌内共生体在一个依赖于蛋白质导入途径获得的过程中产生了线粒体。内共生体细胞机制的修饰以及在某些情况下的重大改造产生了这些途径,使线粒体成为所有真核细胞共有的细胞器。线粒体蛋白质导入机制与现代细菌蛋白质之间的同源性和结构相似性体现了这种进化修补的遗留影响。对这些系统的比较分析揭示了线粒体膜转运体进化的可能途径,也让人们对线粒体蛋白质导入背后的机制有了更深入的理解。本文是名为“蛋白质跨膜转运或插入膜”的特刊的一部分。