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OmpA: a flexible clamp for bacterial cell wall attachment

机译:Ompa:用于细菌细胞壁附着的柔性夹具

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摘要

The envelope of Gram-negative bacteria is highly complex, containing separate outer and inner membranes and an intervening periplasmic space encompassing a peptidoglycan (PGN) cell wall. The PGN scaffold is anchored non-covalently to the outer membrane via globular OmpA-like domains of various proteins. We report atomically detailed simulations of PGN bound to OmpA in three different states, including the isolated C-terminal domain (CTD), the full-length monomer, or the complete full-length dimeric form. Comparative analysis of dynamics of OmpA CTD from different bacteria helped to identify a conserved PGN-binding mode. The dynamics of full-length OmpA, embedded within a realistic representation of the outer membrane containing full-rough (Ra) lipopolysaccharide, phospholipids, and cardiolipin, suggested how the protein may provide flexible mechanical support to the cell wall. An accurate model of the heterogeneous bacterial cell envelope should facilitate future efforts to develop antibacterial agents.
机译:革兰氏阴性细菌的包膜非常复杂,包含独立的外膜和内膜以及介于肽聚糖(PGN)细胞壁之间的周质空间。 PGN支架通过各种蛋白质的球形OmpA样结构域非共价地锚定在外膜上。我们报告了在三个不同状态下与OmpA结合的PGN的原子详细模拟,包括孤立的C末端结构域(CTD),全长单体或完整的全长二聚体形式。来自不同细菌的OmpA CTD动力学的比较分析有助于确定保守的PGN结合模式。全长OmpA的动力学嵌入了包含全粗糙(Ra)脂多糖,磷脂和心磷脂的外膜的真实表示中,表明该蛋白如何为细胞壁提供灵活的机械支持。异质细菌细胞包膜的准确模型应有助于将来开发抗菌剂的努力。

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