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倾向于靶向线粒体的细菌蛋白。

Bacterial proteins predisposed for targeting to mitochondria.

作者信息

Lucattini Rebecca, Likic Vladimir A, Lithgow Trevor

机构信息

Russell Grimwade School of Biochemistry and Molecular Biology, University of Melbourne, Australia.

出版信息

Mol Biol Evol. 2004 Apr;21(4):652-8. doi: 10.1093/molbev/msh058. Epub 2004 Jan 22.

Abstract

Mitochondria evolved from an endosymbiotic proteobacterium in a process that required the transfer of genes from the bacterium to the host cell nucleus, and the translocation of proteins thereby made in the host cell cytosol into the internal compartments of the organelle. According to current models for this evolution, two highly improbable events are required to occur simultaneously: creation of a protein translocation machinery to import proteins back into the endosymbiont and creation of targeting sequences on the protein substrates themselves. Using a combination of two independent prediction methods, validated through tests on simulated genomes, we show that at least 5% of proteins encoded by an extant proteobacterium are predisposed for targeting to mitochondria, and propose we that mitochondrial targeting information was preexisting for many proteins of the endosymbiont. We analyzed a family of proteins whose members exist both in bacteria and in mitochondria of eukaryotes and show that the amino-terminal extensions occasionally found in bacterial family members can function as a crude import sequence when the protein is presented to isolated mitochondria. This activity leaves the development of a primitive translocation channel in the outer membrane of the endosymbiont as a single hurdle to initiating the evolution of mitochondria.

摘要

线粒体由一种内共生的变形菌进化而来,这一过程需要将基因从细菌转移到宿主细胞核,并将在宿主细胞质中合成的蛋白质转运到细胞器的内部隔室。根据当前关于这种进化的模型,需要两个极不可能同时发生的事件:创建一种蛋白质转运机制,将蛋白质重新导入内共生体,以及在蛋白质底物自身上创建靶向序列。通过对模拟基因组进行测试验证的两种独立预测方法相结合,我们发现现存变形菌编码的蛋白质中至少5%倾向于靶向线粒体,并提出内共生体的许多蛋白质的线粒体靶向信息是预先存在的。我们分析了一类蛋白质,其成员存在于细菌和真核生物的线粒体中,并表明当蛋白质呈现给分离的线粒体时,细菌家族成员中偶尔发现的氨基末端延伸可以作为一种粗略的导入序列发挥作用。这种活性使得在内共生体外膜中形成一个原始转运通道成为启动线粒体进化的唯一障碍。

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