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脂双层相态对水膜界面的影响。

Effects of the lipid bilayer phase state on the water membrane interface.

机构信息

Department of Computational Biophysics and Bioinformatics, Faculty of Biotechnology, Biochemistry and Biophysics, Jagiellonian University, Gronostajowa 7, Poland.

出版信息

J Phys Chem B. 2010 Sep 16;114(36):11784-92. doi: 10.1021/jp104739a.

Abstract

We performed 200 ns MD simulations of phosphatidylcholine (PC) bilayers in the liquid crystalline (L(α)) and gel (L(β)') states to compare the properties of the water-membrane interfaces in these two thermotropic bilayer phases. Our simulations show that the membrane phase determines the behavior of water, ions, and PC head groups. When the membrane was in the gel phase, we found partial dehydration (fewer PC-water interactions), particularly in the carbonyl groups region, as well as an almost complete lack of ionic penetration into this region as compared with the bilayer in the liquid-crystalline phase. In the latter case, there is an exchange of Na(+) ions between the water layer and the interfacial region. This is mainly due to the fact that the most stable binding of Na(+) in the liquid-crystalline bilayer is to the carbonyl groups. The lack of Na(+) binding to the carbonyl groups in the gel phase bilayer can be explained by the more compact structure of the bilayer in this phase.

摘要

我们对处于液晶态(L(α))和凝胶态(L(β)’)的磷脂酰胆碱(PC)双层膜进行了 200 ns 的 MD 模拟,以比较这两种热致双层相中水-膜界面的性质。我们的模拟表明,膜相决定了水、离子和 PC 头基的行为。当膜处于凝胶相时,我们发现部分去水(PC-水相互作用减少),特别是在羰基区域,与液晶相中的双层相比,几乎完全没有离子渗透到该区域。在后一种情况下,水层和界面区域之间有 Na(+)离子的交换。这主要是因为在液晶双层中,Na(+)最稳定的结合是与羰基基团。在凝胶相双层中,Na(+)与羰基基团结合的缺失可以用该相双层结构更紧凑来解释。

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