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The influence of curvature on the properties of the plasma membrane. Insights from atomistic molecular dynamics simulations

机译:曲率对质膜特性的影响。原子分子动力学模拟的见解

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摘要

In this work we conduct a systematic analysis of the influence of curvature on various properties of a realistic model of mammalian plasma membrane with asymmetric lipid content of monolayers and a realistic concentration of cholesterol. In order to do this we developed new technique for simulating membranes with the global membrane curvature restricted to any desirable value while keeping free lateral diffusion of the lipids and without introducing artifacts or perturbing the membrane structure. We show that the thickness of the hydrophobic core of the concave monolayer decreases by approximately 1.3 Å in comparison to that of the flat membrane, while the thickness of the convex monolayer does not change. The order parameter of the lipid tails decreases significantly in the certain layers of the curved membrane. The area per lipid increases in the convex monolayer and decreases in the concave monolayer. The cholesterol inclination angle decreases when the curvature of a particular monolayer changes from concave to convex. The amount of cholesterol in the minor fraction located between the membrane leaflets is zero in the membrane with positive curvature and increases to 1.7% in the flat membrane and to 2.5% in the membrane with negative curvature.
机译:在这项工作中,我们对曲率对哺乳动物质膜具有单层脂质含量不对称和胆固醇实际浓度的真实模型的各种特性的影响进行了系统的分析。为了做到这一点,我们开发了一种模拟膜的新技术,该膜的总体膜曲率被限制在任何所需的值,同时保持脂质的自由侧向扩散,并且不会引入伪影或干扰膜结构。我们表明,与平膜相比,凹单层的疏水核的厚度减少了约1.3Å,而凸单层的厚度却没有变化。脂质尾巴的有序参数在弯曲膜的某些层中显着降低。每个脂质的面积在凸单层中增加而在凹单层中减少。当特定单层的曲率从凹面变为凸面时,胆固醇倾斜角会减小。在膜小叶之间的小部分中的胆固醇含量在曲率为正的膜中为零,在平坦膜中为1.7%,在曲率为负的膜中为2.5%。

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