School of Chemistry, University of Southampton, Highfield Campus, Southampton SO17 1BJ, UK.
School of Chemistry, University of Southampton, Highfield Campus, Southampton SO17 1BJ, UK.
Structure. 2021 May 6;29(5):444-456.e2. doi: 10.1016/j.str.2021.01.009. Epub 2021 Feb 11.
The periplasm of Gram-negative bacteria is a complex, highly crowded molecular environment. Little is known about how antibiotics move across the periplasm and the interactions they experience. Here, atomistic molecular dynamics simulations are used to study the antibiotic polymyxin B1 within models of the periplasm, which are crowded to different extents. We show that PMB1 is likely to be able to "hitchhike" within the periplasm by binding to lipoprotein carriers-a previously unreported passive transport route. The simulations reveal that PMB1 forms both transient and long-lived interactions with proteins, osmolytes, lipids of the outer membrane, and the cell wall, and is rarely uncomplexed when in the periplasm. Furthermore, it can interfere in the conformational dynamics of native proteins. These are important considerations for interpreting its mechanism of action and are likely to also hold for other antibiotics that rely on diffusion to cross the periplasm.
革兰氏阴性菌的周质是一个复杂的、高度拥挤的分子环境。目前人们对于抗生素如何穿过周质以及它们所经历的相互作用知之甚少。在这里,我们使用原子分子动力学模拟来研究周质模型中的抗生素多粘菌素 B1,这些模型的拥挤程度不同。我们表明,PMB1 很可能能够通过与脂蛋白载体结合在周质中“搭便车”——这是一种以前未报道的被动运输途径。模拟表明,PMB1 与蛋白质、渗透物、外膜脂质和细胞壁形成短暂和持久的相互作用,并且在周质中很少无复合物。此外,它可以干扰天然蛋白质的构象动力学。这些对于解释其作用机制非常重要,并且可能也适用于其他依赖扩散穿过周质的抗生素。