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磷脂双层膜的分子动力学模拟

Molecular dynamics simulations of phospholipid bilayers.

作者信息

Huang P, Perez J J, Loew G H

机构信息

Molecular Research Institute, Palo Alto, CA 94304.

出版信息

J Biomol Struct Dyn. 1994 Apr;11(5):927-56. doi: 10.1080/07391102.1994.10508045.

Abstract

Molecular dynamics (MD) simulations at 37 degrees C have been performed on three phospholipid bilayer systems composed of the lipids DLPE, DOPE, and DOPC. The model used included 24 explicit lipid molecules and explicit waters of solvation in the polar head group regions, together with constant-pressure periodic boundary conditions in three dimensions. Using this model, a MD simulation samples part of an infinite planar lipid bilayer. The lipid dynamics and packing behavior were characterized. Furthermore, using the results of the simulations, a number of diverse properties including bilayer structural parameters, hydrocarbon chain order parameters, dihedral conformations, electron density profile, hydration per lipid, and water distribution along the bilayer normal were calculated. Many of these properties are available for the three lipid systems chosen, making them well suited for evaluating the model and protocols used in these simulations by direct comparisons with experimental data. The calculated MD behavior, chain disorder, and lipid packing parameter, i.e. the ratio of the effective areas of hydrocarbon tails and head group per lipid (a(t)/ah), correctly predict the aggregation preferences of the three lipids observed experimentally at 37 degrees C, namely: a gel bilayer for DLPE, a hexagonal tube for DOPE, and a liquid crystalline bilayer for DOPC. In addition, the model and conditions used in the MD simulations led to good agreement of the calculated properties of the bilayers with available experimental results, demonstrating the reliability of the simulations. The effects of the cis unsaturation in the hydrocarbon chains of DOPE and DOPC, compared to the fully saturated one in DLPE, as well as the effects of the different polar head groups of PC and PE with the same unsaturated chains on the lipid packing and bilayer structure have been investigated. The results of these studies indicate the ability of MD methods to provide molecular-level insights into the structure and dynamics of lipid assemblies.

摘要

已在37摄氏度下对由脂质DLPE、DOPE和DOPC组成的三个磷脂双层系统进行了分子动力学(MD)模拟。所使用的模型包括24个明确的脂质分子以及极性头部基团区域中明确的溶剂化水,同时在三维空间中采用恒压周期性边界条件。使用该模型,MD模拟对无限平面脂质双层的一部分进行了采样。对脂质动力学和堆积行为进行了表征。此外,利用模拟结果计算了许多不同的性质,包括双层结构参数、烃链序参数、二面角构象、电子密度分布、每个脂质的水合作用以及沿双层法线的水分布。所选的这三种脂质系统具有许多这些性质,通过与实验数据直接比较,使其非常适合评估这些模拟中使用的模型和方案。计算得到的MD行为、链无序和脂质堆积参数,即每个脂质的烃尾和头部基团的有效面积之比(a(t)/ah),正确地预测了在37摄氏度下实验观察到的三种脂质的聚集偏好,即:DLPE形成凝胶双层,DOPE形成六方管,DOPC形成液晶双层。此外,MD模拟中使用的模型和条件使得双层计算性质与现有实验结果具有良好的一致性,证明了模拟的可靠性。研究了DOPE和DOPC烃链中的顺式不饱和与DLPE中完全饱和烃链相比的影响,以及具有相同不饱和链的PC和PE不同极性头部基团对脂质堆积和双层结构的影响。这些研究结果表明MD方法能够在分子水平上深入了解脂质组装体的结构和动力学。

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