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胆固醇对溶质分配到脂质膜中的影响很大。

Large influence of cholesterol on solute partitioning into lipid membranes.

机构信息

Department of Cell and Molecular Biology, Uppsala University, Husargatan 3, Box 596, SE-75124 Uppsala, Sweden.

出版信息

J Am Chem Soc. 2012 Mar 21;134(11):5351-61. doi: 10.1021/ja211929h. Epub 2012 Mar 12.

Abstract

Cholesterol plays an important role in maintaining the correct fluidity and rigidity of the plasma membrane of all animal cells, and hence, it is present in concentrations ranging from 20 to 50 mol %. Whereas the effect of cholesterol on such mechanical properties has been studied exhaustively over the last decades, the structural basis for cholesterol effects on membrane permeability is still unclear. Here we apply systematic molecular dynamics simulations to study the partitioning of solutes between water and membranes. We derive potentials of mean force for six different solutes permeating across 20 different lipid membranes containing one out of four types of phospholipids plus a cholesterol content varying from 0 to 50 mol %. Surprisingly, cholesterol decreases solute partitioning into the lipid tail region of the membranes much more strongly than expected from experiments on macroscopic membranes, suggesting that a laterally inhomogeneous cholesterol concentration and permeability may be required to explain experimental findings. The simulations indicate that the cost of breaking van der Waals interactions between the lipid tails of cholesterol-containing membranes account for the reduced partitioning rather than the surface area per phospholipid, which has been frequently suggested as a determinant for solute partitioning. The simulations further show that the partitioning is more sensitive to cholesterol (i) for larger solutes, (ii) in membranes with saturated as compared to membranes with unsaturated lipid tails, and (iii) in membranes with smaller lipid head groups.

摘要

胆固醇在维持所有动物细胞的质膜的正确流动性和刚性方面起着重要作用,因此,其浓度范围在 20 到 50 毫摩尔之间。尽管过去几十年来已经对胆固醇对这些机械性能的影响进行了详尽的研究,但胆固醇对膜通透性的结构基础仍不清楚。在这里,我们应用系统的分子动力学模拟来研究溶质在水和膜之间的分配。我们为六种不同的溶质在 20 种不同的脂质膜中渗透得出平均力势,这些脂质膜包含四种磷脂中的一种,胆固醇含量从 0 到 50 毫摩尔。令人惊讶的是,胆固醇对溶质分配到膜的脂质尾部区域的影响比宏观膜实验预期的要强得多,这表明可能需要横向不均匀的胆固醇浓度和渗透性来解释实验结果。模拟表明,含有胆固醇的膜的脂质尾部之间的范德华相互作用的破坏成本解释了分配的减少,而不是经常被认为是溶质分配决定因素的每磷脂表面积。模拟进一步表明,分配对胆固醇的影响更敏感:(i)对于较大的溶质,(ii)在饱和脂质尾部的膜中比在不饱和脂质尾部的膜中,以及(iii)在具有较小脂质头部基团的膜中。

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