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磷脂酰甘油在细菌细胞膜稳定性中的作用。

Role of phosphatidylglycerols in the stability of bacterial membranes.

作者信息

Zhao Wei, Róg Tomasz, Gurtovenko Andrey A, Vattulainen Ilpo, Karttunen Mikko

机构信息

Theoretical Physical Chemistry Group, Eduard-Zintl-Institute for Inorganic and Physical Chemistry, Technische Universität Darmstadt, Germany.

出版信息

Biochimie. 2008 Jun;90(6):930-8. doi: 10.1016/j.biochi.2008.02.025. Epub 2008 Mar 8.

Abstract

An extensive 100-ns molecular dynamics simulation of lipid bilayer composed of mixture of phosphatidylethanolamine (PE) and phosphatidylglycerol (PG) was performed to elucidate the role of PGs to the stability of bacterial membranes. In addition, a control simulation of pure PE over 150 ns was performed. We observed that PGs decrease both the PE headgroup protrusions into the water phase, and the PE headgroup motion along bilayer normal. The above effects are caused by stronger inter-lipid interactions in the mixed bilayer: the number of hydrogen bonds created by PEs is 34% higher in the mixed than in the pure bilayer. Another contribution is due to the numerous ion-mediated inter-lipid links, which strongly enhance interface stability. That provides a plausible mechanism for preventing lipid desorption from the membrane, for example, under the influence of an organic solvent. A more compact and less dynamic interface structure also decreases membrane permeability. That provides a possible mechanism for stabilizing, e.g., bacterial membranes.

摘要

进行了一项广泛的100纳秒分子动力学模拟,研究由磷脂酰乙醇胺(PE)和磷脂酰甘油(PG)混合物组成的脂质双层,以阐明PG对细菌膜稳定性的作用。此外,还对纯PE进行了150纳秒的对照模拟。我们观察到,PG既减少了PE头基团向水相的突出,也减少了PE头基团沿双层法线的运动。上述效应是由混合双层中更强的脂质间相互作用引起的:混合双层中由PE形成的氢键数量比纯双层中高34%。另一个原因是大量离子介导的脂质间连接,这极大地增强了界面稳定性。这为防止脂质从膜上解吸提供了一种合理的机制,例如在有机溶剂的影响下。更紧密且动态性更低的界面结构也降低了膜通透性。这为稳定例如细菌膜提供了一种可能的机制。

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