首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Molecular Dynamics Simulations of Phospholipid Bilayers:Influence of Artificial Periodicity,System Size,and Simulation Time
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Molecular Dynamics Simulations of Phospholipid Bilayers:Influence of Artificial Periodicity,System Size,and Simulation Time

机译:磷脂双层分子动力学模拟:人工周期,系统尺寸和模拟时间的影响

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摘要

This article investigates the convergence of structural and dynamical properties with system size and with time in molecular dynamics simulations of solvated phospholipid bilayers performed at constant volume under periodic boundary conditions using lattice-sum electrostatics.The electron density profile across the bilayer,the carbon-deuterium order parameters,and the surface tension are shown to be converged for a bilayer containing 36 lipids per leaflet and simulated over a period of 3-4 ns.Reasonable estimates for these properties can already be obtained from a system containing 16 lipids per leaflet.The convergence limit of 36 lipids per leaflet and the investigation of the correlation between lipid headgroup dipoles suggest a correlation length of about 3-5 nm in the lateral directions for a hydrated DPPC bilayer in the liquid-crystalline phase.Although these(relatively small)system sizes and(relatively short)time scales appear sufficient to obtain converged collective structural properties at constant volume,two restrictions should be kept in mind:(i)the relaxation times associated with the motion of individual lipids may be much longer and(ii)simulated properties converge significantly faster under constant volume conditions as compared to constant pressure conditions.Therefore,an aCCl_4rate assessment of the dynamical properties of the system or of the relaxation of the bilayer under constant pressure conditions may require longer simulation time scales.
机译:本文研究了在周期性边界条件下使用晶格和静电在恒定体积下进行的溶剂化磷脂双层分子的分子动力学模拟中,随着系统尺寸和时间的变化,结构和动力学性质的收敛性。跨双层,碳-氘的电子密度分布阶数参数和表面张力显示为对每张小叶包含36个脂质的双层收敛,并在3-4 ns的时间内进行了模拟。从每张小叶包含16个脂质的系统已经可以对这些特性进行合理的估计。每片小叶36个脂质的收敛极限以及对脂质头基偶极子之间相关性的研究表明,液晶相中水合DPPC双层在横向上的相关长度约为3-5 nm。尽管这些(相对较小)系统规模和(相对较短的)时间尺度似乎足以获得聚合的集体结构在恒定体积下的特性,应牢记两个限制条件:(i)与单个脂质运动相关的弛豫时间可能更长,并且(ii)与恒定压力条件相比,在恒定体积条件下模拟的特性收敛快得多。因此,在恒定压力条件下,对系统的动力学特性或双层的松弛度进行CCl-4速率评估可能需要更长的仿真时间尺度。

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