细菌外膜
周质间隙
内膜
ATP结合盒运输机
单元格信封
细胞生物学
膜转运蛋白
生物
外膜转位酶
补体膜攻击复合物
化学
膜
运输机
生物化学
膜蛋白
线粒体
大肠杆菌
遗传学
补体系统
基因
抗体
作者
Damian C. Ekiert,Nicolas Coudray,Gira Bhabha
标识
DOI:10.1016/j.sbi.2022.102429
摘要
The cell envelope of Gram-negative bacteria is composed of an inner membrane, outer membane, and an intervening periplasmic space. How the outer membrane lipids are trafficked and assembled there, and how the asymmetry of the outer membrane is maintained is an area of intense research. The Mla system has been implicated in the maintenance of lipid asymmetry in the outer membrane, and is generally thought to drive the removal of mislocalized phospholipids from the outer membrane and their retrograde transport to the inner membrane. At the heart of the Mla pathway is a structurally unique ABC transporter complex in the inner membrane, called MlaFEDB. Recently, an explosion of cryo-EM studies has begun to shed light on the structure and lipid translocation mechanism of MlaFEDB, with many parallels to other ABC transporter families, including human ABCA and ABCG, as well as bacterial lipopolysaccharide and O-antigen transporters. Here we synthesize information from all available structures, and propose a model for lipid trafficking across the cell envelope by MlaFEDB.
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