School of Chemistry, University of Southampton, Highfield, Southampton SO17 1BJ, UK.
School of Chemistry, University of Southampton, Highfield, Southampton SO17 1BJ, UK.
Structure. 2019 Apr 2;27(4):713-724.e2. doi: 10.1016/j.str.2019.01.001. Epub 2019 Jan 31.
We present a molecular modeling and simulation study of the E. coli cell envelope, with a particular focus on the role of TolR, a native protein of the E. coli inner membrane, in interactions with the cell wall. TolR has been proposed to bind to peptidoglycan, but the only structure of this protein thus far is in a conformation in which the putative peptidoglycan binding domain is not accessible. We show that a model of the extended conformation of the protein in which this domain is exposed binds peptidoglycan largely through electrostatic interactions. Non-covalent interactions of TolR and OmpA with the cell wall, from the inner membrane and outer membrane sides, respectively, maintain the position of the cell wall even in the absence of Braun's lipoprotein. The charged residues that mediate the cell-wall interactions of TolR in our simulations are conserved across a number of species of gram-negative bacteria.
我们呈现了一项大肠杆菌细胞包膜的分子建模和模拟研究,特别关注 TolR(一种大肠杆菌内膜的天然蛋白)在与细胞壁相互作用中的作用。TolR 被提议与肽聚糖结合,但迄今为止,该蛋白的唯一结构处于构象中,其中假定的肽聚糖结合结构域不可用。我们表明,该蛋白的延伸构象模型中,该结构域暴露出来,通过静电相互作用与肽聚糖结合。TolR 和 OmpA 分别从内膜和外膜侧与细胞壁的非共价相互作用,维持细胞壁的位置,即使在没有 Braun 脂蛋白的情况下也是如此。在我们的模拟中,介导 TolR 与细胞壁相互作用的带电残基在许多革兰氏阴性细菌物种中是保守的。