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β-桶状结构组装机器的进化。

Evolution of the β-barrel assembly machinery.

机构信息

Department of Biochemistry and Molecular Biology, Monash University, Melbourne 3800, Australia.

出版信息

Trends Microbiol. 2012 Dec;20(12):612-20. doi: 10.1016/j.tim.2012.08.006. Epub 2012 Sep 6.

Abstract

Proteins from the Omp85 family have roles in membrane biogenesis, and the archetypal protein of this family is the bacterial outer membrane protein BamA. Through evolution, BamA has acquired membrane protein partner subunits, but distinct partner subunits are evident in the various bacterial lineages. As a result, experimental work on several species of bacteria has revealed varietal forms of the β-barrel assembly machinery (BAM complex). This scenario extends even into mitochondria and plastids, organelles of eukaryotic cells that evolved from intracellular bacterial ancestors. In addition to the BAM complex, other molecular machines, namely the two-partner secretion system (TPS) and the translocation and assembly module (the TAM), probably evolved from gene duplication events involving BamA. We discuss what is known about the diverse composition of the BAM complex in various bacterial lineages, and how this diversity impacts on our understanding of the mechanism underlying the assembly of bacterial outer membranes.

摘要

Omp85 家族的蛋白质在膜生物发生中起作用,该家族的典型蛋白质是细菌外膜蛋白 BamA。通过进化,BamA 获得了膜蛋白伴侣亚基,但在不同的细菌谱系中明显存在不同的伴侣亚基。因此,对几种细菌的实验工作揭示了β桶组装机制(BAM 复合物)的变种形式。这种情况甚至延伸到线粒体和质体,即真核细胞的细胞器,它们是从细胞内细菌祖先进化而来的。除了 BAM 复合物外,其他分子机器,即双伙伴分泌系统(TPS)和易位和组装模块(TAM),可能是由涉及 BamA 的基因复制事件进化而来的。我们讨论了在不同的细菌谱系中 BAM 复合物的多样性组成,以及这种多样性如何影响我们对细菌外膜组装机制的理解。

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