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Cholesterol Induces Uneven Curvature of Asymmetric Lipid Bilayers

机译:胆固醇诱导不对称脂质双层的曲率不均匀

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摘要

A remarkable flexibility is observed in biological membranes, which allows them to form the structures of different curvatures. We addressed the question of intrinsic ability of phospholipid membranes to form highly curved structures and the role of cholesterol in this process. The distribution of cholesterol in the highly curved asymmetric DOPC/DOPS lipid bilayer was investigated by the coarse-grained molecular dynamics simulations in the membrane patches with large aspect ratio. It is shown that cholesterol induces uneven membrane curvature promoting the formation of extended flattened regions of the membrane interleaved by sharp bends. It is shown that the affinity of cholesterol to anionic DOPS or neutral DOPC lipids is curvature dependent. The cholesterol prefers DOPS to DOPC in either planar or highly curved parts of the membrane. In contrast, in the narrow interval of moderate membrane curvatures this preference is inverted. Our data suggest that there is a complex self-consistent interplay between the membrane curvature and cholesterol distribution in the asymmetric lipid bilayers. The suggested new function of cholesterol may have a biological relevance.
机译:在生物膜中观察到了显着的柔韧性,这使得它们可以形成不同曲率的结构。我们解决了磷脂膜形成高度弯曲结构的内在能力以及胆固醇在此过程中的作用的问题。通过在大纵横比的膜片中的粗粒分子动力学模拟研究了高度弯曲的不对称DOPC / DOPS脂质双层中胆固醇的分布。结果表明,胆固醇会引起不均匀的膜曲率,从而促进形成由急剧弯曲交错的膜延伸平坦区域。已经表明胆固醇对阴离子DOPS或中性DOPC脂质的亲和力是曲率依赖性的。在膜的平面或高度弯曲的部分中,胆固醇比DOPC更喜欢使用DOPS。相反,在中等的膜曲率的狭窄间隔中,这种偏好被颠倒了。我们的数据表明,在不对称脂质双层中膜曲率和胆固醇分布之间存在复杂的自洽相互作用。建议的胆固醇新功能可能与生物学有关。

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