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Outer Membrane Biogenesis
Annual Review of Microbiology ( IF 10.5 ) Pub Date : 2017-09-08 00:00:00 , DOI: 10.1146/annurev-micro-090816-093754
Anna Konovalova 1 , Daniel E. Kahne 2, 3, 4 , Thomas J. Silhavy 1
Affiliation  

The hallmark of gram-negative bacteria and organelles such as mitochondria and chloroplasts is the presence of an outer membrane. In bacteria such as Escherichia coli, the outer membrane is a unique asymmetric lipid bilayer with lipopolysaccharide in the outer leaflet. Integral transmembrane proteins assume a β-barrel structure, and their assembly is catalyzed by the heteropentameric Bam complex containing the outer membrane protein BamA and four lipoproteins, BamB–E. How the Bam complex assembles a great diversity of outer membrane proteins into a membrane without an obvious energy source is a particularly challenging problem, because folding intermediates are predicted to be unstable in either an aqueous or a hydrophobic environment. Two models have been put forward: the budding model, based largely on structural data, and the BamA assisted model, based on genetic and biochemical studies. Here we offer a critical discussion of the pros and cons of each.

中文翻译:


外膜生物发生

革兰氏阴性细菌和细胞器(例如线粒体和叶绿体)的标志是存在外膜。在大肠杆菌等细菌,外膜是独特的不对称脂质双层,在外小叶中具有脂多糖。完整的跨膜蛋白呈β桶状结构,其组装是由包含外部膜蛋白BamA和四种脂蛋白BamB-E的异五聚体Bam复合物催化的。Bam复合物如何在没有明显能量来源的情况下将大量的外膜蛋白组装成膜是一个特别具有挑战性的问题,因为据预测,折叠中间体在水性或疏水性环境中都不稳定。提出了两种模型:主要基于结构数据的萌芽模型,以及基于遗传和生化研究的BamA辅助模型。在这里,我们对每种方案的优缺点进行了批判性讨论。

更新日期:2017-09-08
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