Szczepaniak Florence, Dehez François, Roux Benoît
CNRS, LPCT, Université de Lorraine, F-54000 Nancy, France.
Department of Chemistry, University of Chicago, Chicago, Illinois 60637,United States.
J Phys Chem Lett. 2024 Apr 11;15(14):3796-3804. doi: 10.1021/acs.jpclett.4c00305. Epub 2024 Apr 1.
All-atom simulations are a powerful approach to study the structure and dynamics of biological membranes. However, sampling the atomic configurations of inhomogeneous membranes can be challenging due to the slow lateral diffusion of the various constituents. To address this issue, a hybrid nonequilibrium molecular dynamics Monte Carlo (neMD/MC) simulation method is proposed in which randomly chosen lipid molecules are swapped to generate configurations that are subsequently accepted or rejected according to a Metropolis criterion based on the alchemical work for the attempted swap calculated via a short trajectory. A dual-topology framework constraining the common atoms of the exchanging molecules yields a good acceptance probability using switching trajectories as short as 10 ps. The performance of the hybrid neMD/MC algorithm and its ability to sample the distribution of lipids near a transmembrane helix carrying a net charge are illustrated for a binary mixture of charged and zwitterionic lipids.
全原子模拟是研究生物膜结构和动力学的一种强大方法。然而,由于各种成分的横向扩散缓慢,对非均匀膜的原子构型进行采样可能具有挑战性。为了解决这个问题,提出了一种混合非平衡分子动力学蒙特卡罗(neMD/MC)模拟方法,其中随机选择的脂质分子被交换以生成构型,随后根据基于通过短轨迹计算的尝试交换的炼金术功的Metropolis准则接受或拒绝这些构型。使用短至10 ps的切换轨迹,约束交换分子的公共原子的双拓扑框架产生了良好的接受概率。针对带电脂质和两性离子脂质的二元混合物,展示了混合neMD/MC算法的性能及其对携带净电荷的跨膜螺旋附近脂质分布进行采样的能力。