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脂质双分子层:力场对有序性和动力学的影响。

Lipid Bilayers: The Effect of Force Field on Ordering and Dynamics.

作者信息

Poger David, Mark Alan E

机构信息

The University of Queensland, School of Chemistry and Molecular Biosciences, Brisbane QLD 4072, Australia.

The University of Queensland, Institute for Molecular Bioscience, Brisbane QLD 4072, Australia.

出版信息

J Chem Theory Comput. 2012 Nov 13;8(11):4807-17. doi: 10.1021/ct300675z. Epub 2012 Oct 18.

Abstract

The sensitivity of the structure and dynamics of a fully hydrated pure bilayer of 1,2-dipalmitoyl-sn-glycero-3-phosphocholine (DPPC) in molecular dynamics simulations to changes in force-field and simulation parameters has been assessed. Three related force fields (the Gromos 54A7 force field, a Gromos 53A6-derived parameter set and a variant of the Berger parameters) in combination with either particle-mesh Ewald (PME) or a reaction field (RF) were compared. Structural properties such as the area per lipid, carbon-deuterium order parameters, electron density profile and bilayer thicknesses, are reproduced by all the parameter sets within the uncertainty of the available experimental data. However, there are clear differences in the ordering of the glycerol backbone and choline headgroup, and the orientation of the headgroup dipole. In some cases, the degree of ordering was reminiscent of a liquid-ordered phase. It is also shown that, although the lateral diffusion of the lipids in the plane of the bilayer is often used to validate lipid force fields, because of the uncertainty in the experimental measurements and the fact that the lateral diffusion is dependent on the choice of the simulation conditions, it should not be employed as a measure of quality. Finally, the simulations show that the effect of small changes in force-field parameters on the structure and dynamics of a bilayer is more significant than the treatment of the long-range electrostatic interactions using RF or PME. Overall, the Gromos 54A7 best reproduced the range of experimental data examined.

摘要

在分子动力学模拟中,已评估了完全水合的1,2-二棕榈酰-sn-甘油-3-磷酸胆碱(DPPC)纯双层结构和动力学对力场及模拟参数变化的敏感性。比较了三个相关力场(Gromos 54A7力场、源自Gromos 53A6的参数集以及Berger参数的一个变体)与粒子网格埃瓦尔德(PME)或反应场(RF)的组合。所有参数集在现有实验数据的不确定度范围内均能再现诸如每个脂质的面积、碳-氘序参数、电子密度分布和双层厚度等结构特性。然而,甘油主链和胆碱头部基团的有序性以及头部基团偶极的取向存在明显差异。在某些情况下,有序程度让人联想到液相有序相。研究还表明,尽管双层平面内脂质的横向扩散常被用于验证脂质力场,但由于实验测量存在不确定性且横向扩散取决于模拟条件的选择,因此不应将其用作质量衡量标准。最后,模拟结果表明,力场参数的微小变化对双层结构和动力学的影响比使用RF或PME处理长程静电相互作用更为显著。总体而言,Gromos 54A7最能重现所研究的实验数据范围。

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