Robinson A J, Richards W G, Thomas P J, Hann M M
Physical Chemistry Laboratory, Oxford University, United Kingdom.
Biophys J. 1994 Dec;67(6):2345-54. doi: 10.1016/S0006-3495(94)80720-9.
A computer-modeled hydrated bilayer model of the lipid 2,3-dimyristoyl-D-glycero-1-phosphorylcholine in the L alpha phase was built. Particular care was taken in building the starting structure with the inclusion of structural detail reported in experiments on the L alpha phase. Molecular dynamics simulations using the molecular dynamics and energy refinement program AMBER 3.1 force field with an optimized parameters for liquid simulation parameter set were run to study the motions and conformations of the lipid molecules and characterize the behavior and structure of the head groups and the hydrocarbon lipid chains. Although the head groups were observed to show great flexibility, certain head-group torsion combinations appeared favored. The observed tilt of the lipid chains is discussed and is consistent with previous experimental findings. Motion of the lipid chains is shown to be correlated with those chains immediately surrounding, but correlation with chains more distant varies with time.
构建了处于Lα相的脂质2,3-二肉豆蔻酰-D-甘油-1-磷酸胆碱的计算机模拟水合双层模型。在构建起始结构时特别小心,纳入了关于Lα相实验中报道的结构细节。使用分子动力学和能量优化程序AMBER 3.1力场以及针对液体模拟参数集优化的参数进行分子动力学模拟,以研究脂质分子的运动和构象,并表征头部基团和烃类脂质链的行为和结构。尽管观察到头部基团具有很大的灵活性,但某些头部基团扭转组合似乎更受青睐。讨论了观察到的脂质链倾斜情况,这与先前的实验结果一致。脂质链的运动显示与紧邻的那些链相关,但与更远距离链的相关性随时间变化。