Berger O, Edholm O, Jähnig F
Max-Planck-Institut für Biologie, Abteilung Membranbiochemie, Tübingen, Germany.
Biophys J. 1997 May;72(5):2002-13. doi: 10.1016/S0006-3495(97)78845-3.
Molecular dynamics simulations of 500 ps were performed on a system consisting of a bilayer of 64 molecules of the lipid dipalmitoylphosphatidylcholine and 23 water molecules per lipid at an isotropic pressure of 1 atm and 50 degrees C. Special attention was devoted to reproduce the correct density of the lipid, because this quantity is known experimentally with a precision better than 1%. For this purpose, the Lennard-Jones parameters of the hydrocarbon chains were adjusted by simulating a system consisting of 128 pentadecane molecules and varying the Lennard-Jones parameters until the experimental density and heat of vaporization were obtained. With these parameters the lipid density resulted in perfect agreement with the experimental density. The orientational order parameter of the hydrocarbon chains agreed perfectly well with the experimental values, which, because of its correlation with the area per lipid, makes it possible to give a proper estimate of the area per lipid of 0.61 +/- 0.01 nm2.
在1个大气压和50摄氏度的各向同性压力下,对由64个二棕榈酰磷脂酰胆碱脂质分子双层以及每个脂质分子对应23个水分子组成的系统进行了500皮秒的分子动力学模拟。特别关注了重现脂质的正确密度,因为该量在实验中已知,精度优于1%。为此,通过模拟由128个十五烷分子组成的系统并改变 Lennard-Jones 参数,直到获得实验密度和汽化热,对烃链的 Lennard-Jones 参数进行了调整。使用这些参数,脂质密度与实验密度完全一致。烃链的取向序参数与实验值完美吻合,由于其与每个脂质分子面积的相关性,使得能够对每个脂质分子的面积进行适当估计,为0.61±0.01 nm²。