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Atom-scale molecular interactions in lipid raft mixtures.

机译:脂质筏混合物中的原子级分子相互作用。

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We review the relationship between molecular interactions and the properties of lipid environments. A specific focus is given on bilayers which contain sphingomyelin (SM) and sterols due to their essential role for the formation of lipid rafts. The discussion is based on recent atom-scale molecular dynamics simulations, complemented by extensive comparison to experimental data. The discussion is divided into four sections. The first part investigates the properties of one-component SM bilayers and compares them to bilayers with phosphatidylcholine (PC), the focus being on a detailed analysis of the hydrogen bonding network in the two bilayers. The second part deals with binary mixtures of sterols with either SM or PC. The results show how the membrane properties may vary substantially depending on the sterol and SM type available, the membrane order and interdigitation being just two of the many examples of this issue. The third part concentrates on the specificity of intermolecular interactions in three-component mixtures of SM, PC and cholesterol (CHOL) under conditions where the concentrations of SM and CHOL are dilute with respect to that of PC. The results show how SM and CHOL favor one another, thus acting as nucleation sites for the formation of highly ordered nanosized domains. Finally, the fourth part discusses the large-scale properties of raft-like membrane environments and compares them to the properties of non-raft membranes. The differences turn out to be substantial. As a particularly intriguing example of this, the lateral pressure profiles of raft-like and non-raft systems indicate that the lipid composition of membrane domains may have a major impact on membrane protein activation.
机译:我们审查了分子相互作用和脂质环境的性质之间的关系。由于包含鞘磷脂(SM)和固醇的双层对于脂质筏的形成至关重要,因此将重点放在双层上。讨论基于最近的原子尺度分子动力学模拟,并与实验数据进行了广泛的比较。讨论分为四个部分。第一部分研究单组分SM双层的性能,并将其与含磷脂酰胆碱(PC)的双层进行比较,重点是对两个双层中氢键网络的详细分析。第二部分介绍了固醇与SM或PC的二元混合物。结果表明,膜的性质如何根据可用的固醇和SM类型而有很大变化,膜的顺序和指叉只是该问题众多实例中的两个。第三部分集中讨论在SM,PC和胆固醇的浓度相对于PC稀释的条件下,SM,PC和胆固醇(CHOL)的三组分混合物中分子间相互作用的特异性。结果表明SM和CHOL如何相互支持,从而充当形成高度有序纳米尺寸域的成核位点。最后,第四部分讨论了筏状膜环境的大规模性质,并将其与非筏状膜的性质进行了比较。结果差异很大。作为一个特别有趣的例子,筏状和非筏系统的侧向压力曲线表明,膜结构域的脂质组成可能对膜蛋白的活化有重要影响。

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