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首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Simulations of simple Bovine and Homo sapiens outer cortex ocular lens membrane models with a majority concentration of cholesterol
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Simulations of simple Bovine and Homo sapiens outer cortex ocular lens membrane models with a majority concentration of cholesterol

机译:简单牛和同性恋外皮眼镜眼镜膜模型的模拟,具有大多数浓度的胆固醇

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The lipid composition of bovine and human ocular lens membranes has been probed, and a variety of lipids have been found including phosphatidylcholine (PC), phosphatidylethanolamine (PE), sphingomyelin (SM), and cholesterol (CHOL) with cholesterol being present in particularly high concentrations. In this study, we use the all-atom CHARMM36 force field to simulate binary, ternary, and quaternary mixtures as models of the ocular lens. High concentration of cholesterol, in combination with different and varying diversity of phospholipids (PL) and sphingolipids (SL), affect the structure of the ocular lens lipid bilayer. The following analyses were done for each simulation: surface area per lipid, component surface area per lipid, deuterium order parameters (SCD), electron density profiles {EDP), membrane thickness, hydrogen bonding, radial distribution functions, clustering, and sterol tilt angle distribution. The SCD show significant bilayer alignment and packing in cholesterol-rich bilayers. The EDP show the transition from liquid crystalline to liquid ordered with the addition of cholesterol. Hydrogen bonds in our systems show the tendency for intramolecular interactions between cholesterol and fully saturated lipid tails for less complex bilayers. But with an increased number of components in the bilayer, the acyl chain of the lipids becomes a less important characteristic, and the headgroup of the lipid becomes more significant. Overall, cholesterol is the driving force of membrane structure of the ocular lens membrane where interactions between cholesterol, PL, and SL determine structure and function of the biomembrane. The goal of this work is to develop a baseline for further study of more physiologically realistic ocular lens lipid membranes. This article is part of a Special Issue entitled: Emergence of Complex Behavior in Biomembranes edited by Marjorie Longo.
机译:已经探测了牛和人眼晶状体膜的脂质组合物,已发现各种脂质,包括磷脂酰胆碱(PC),磷脂酰乙醇胺(PE),鞘氨基蛋白(SM)和胆固醇(CHOL),胆固醇存在于特别高浓度。在本研究中,我们使用All-Atom CharmM36强制字段模拟二进制,三元和四元混合物作为眼镜的模型。高浓度的胆固醇,与不同和不同的磷脂(PL)和鞘脂(SL)的不同和变化的多样性,影响眼睛晶状体脂质双层的结构。为每个模拟进行以下分析:每脂质的表面积,组分面积每脂质,氘阶参数(SCD),电子密度分布{EDP),膜厚度,氢键,径向分布功能,聚类和甾醇倾斜角度分配。 SCD显示出富含胆固醇的双层的双层对齐和包装。 EDP​​显示从液晶与添加胆固醇的液体结晶到液体的过渡。我们系统中的氢键显示出胆固醇和完全饱和脂质尾部的分子内相互作用的趋势,用于更不复杂的双层。但随着双层组分的增加,脂质的酰基链变得不太重要的特征,并且脂质的头组变得更显着。总体而言,胆固醇是眼睛晶状体膜的膜结构的驱动力,其中胆固醇,PL和SL之间的相互作用确定生物膜的结构和功能。这项工作的目标是开发一种基线,以进一步研究更具生理学上现实的眼晶状体脂质膜。本文是题为的特殊问题的一部分:Marjorie Longo编辑的Biomembranes中复杂行为的出现。

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