Klauda Jeffery B, Brooks Bernard R, Pastor Richard W
Laboratory of Computational Biology, National Heart, Lung and Blood Institute, National Institutes of Health, Bethesda, Maryland 20892, USA.
J Chem Phys. 2006 Oct 14;125(14):144710. doi: 10.1063/1.2354486.
Molecular dynamics (MD) simulations of dipalmitoylphosphatidylcholine bilayers composed of 72 and 288 lipids are used to examine system size dependence on dynamical properties associated with the particle mesh Ewald (PME) treatment of electrostatic interactions. The lateral diffusion constant Dl is 2.92 x 10(-7) and 0.95 x 10(-7) cm2/s for 72 and 288 lipids, respectively. This dramatic finite size effect originates from the correlation length of lipid diffusion, which extends to next-nearest neighbors in the 288 lipid system. Consequently, diffusional events in smaller systems can propagate across the boundaries of the periodic box. The internal dynamics of lipids calculated from the PME simulations are independent of the system size. Specifically, reorientational correlation functions for the slowly relaxing phosphorus-glycerol hydrogen, phosphorus-nitrogen vectors, and more rapidly relaxing CH vectors in the aliphatic chains are equivalent for the 72 and 288 lipid simulations. A third MD simulation of a bilayer with 72 lipids using spherical force-shift electrostatic cutoffs resulted in interdigitated chains, thereby rendering this cutoff method inappropriate.
由72个和288个脂质组成的二棕榈酰磷脂酰胆碱双层的分子动力学(MD)模拟用于研究系统大小对与静电相互作用的粒子网格埃瓦尔德(PME)处理相关的动力学性质的依赖性。对于72个和288个脂质,横向扩散常数Dl分别为2.92×10⁻⁷和0.95×10⁻⁷cm²/s。这种显著的有限尺寸效应源于脂质扩散的相关长度,在288个脂质系统中,该相关长度延伸到次近邻。因此,较小系统中的扩散事件可以跨越周期性盒子的边界传播。由PME模拟计算得到的脂质内部动力学与系统大小无关。具体而言,对于72个和288个脂质的模拟,脂肪链中缓慢弛豫的磷 - 甘油氢、磷 - 氮矢量以及快速弛豫的CH矢量的重取向相关函数是等效的。使用球形力移静电截止对含有72个脂质的双层进行的第三次MD模拟导致链相互交错,从而使这种截止方法不合适。