Mirzoev Alexander, Lyubartsev Alexander P
Division of Physical Chemistry, Department of Materials and Environmental Chemistry, Stockholm University, Stockholm, SE-10691, Sweden.
J Comput Chem. 2014 Jun 15;35(16):1208-18. doi: 10.1002/jcc.23610. Epub 2014 Apr 29.
We have used systematic structure-based coarse graining to derive effective site-site potentials for a 10-site coarse-grained dimyristoylphosphatidylcholine (DMPC) lipid model and investigated their state point dependence. The potentials provide for the coarse-grained model the same site-site radial distribution functions, bond and angle distributions as those computed in atomistic simulations carried out at four different lipid-water molar ratios. It was shown that there is a non-negligible dependence of the effective potentials on the concentration at which they were generated, which is also manifested in the properties of the lipid bilayers simulated using these potentials. Thus, effective potentials computed at low lipid concentration favor to more condensed and ordered structure of the bilayer with lower average area per lipid, while potentials obtained at higher lipid concentrations provide more fluid-like structure. The best agreement with the reference data and experiment was achieved using the set of potentials derived from atomistic simulations at 1:30 lipid:water molar ratio providing fully saturated hydration of DMPC lipids. Despite theoretical limitations of pairwise coarse-grained potentials expressed in their state point dependence, all the resulting potentials provide a stable bilayer structure with correct partitioning of different lipid groups across the bilayer as well as acceptable values of the average lipid area, compressibility and orientational ordering. In addition to bilayer simulations, the model has proven its robustness in modeling of self-aggregation of lipids from randomly dispersed solution to ordered bilayer structures, bicelles, and vesicles.
我们使用了基于系统结构的粗粒化方法,为一个10位点的粗粒化二肉豆蔻酰磷脂酰胆碱(DMPC)脂质模型推导有效的位点-位点势,并研究了它们对状态点的依赖性。这些势为粗粒化模型提供了与在四种不同脂质-水摩尔比下进行的原子模拟中计算得到的相同的位点-位点径向分布函数、键和角度分布。结果表明,有效势对其生成时的浓度存在不可忽略的依赖性,这也体现在使用这些势模拟的脂质双层的性质中。因此,在低脂质浓度下计算得到的有效势有利于形成更致密、有序的双层结构,每个脂质的平均面积较小,而在高脂质浓度下获得的势则提供更类似流体的结构。使用从脂质:水摩尔比为1:30的原子模拟中得到的一组势,实现了与参考数据和实验的最佳吻合,该势使DMPC脂质完全饱和水化。尽管成对粗粒化势在状态点依赖性方面存在理论局限性,但所有得到的势都提供了一个稳定的双层结构,不同脂质基团在双层中具有正确的分配,以及平均脂质面积、压缩性和取向有序性的可接受值。除了双层模拟外,该模型在模拟脂质从随机分散溶液自聚集形成有序双层结构、双分子层和囊泡方面也证明了其稳健性。