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Implicit-solvent dissipative particle dynamics force field based on a four-to-one coarse-grained mapping scheme

机译:基于四对粗粒映射方案的隐式溶剂耗散粒子动力场

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摘要

A new set of efficient solvent-free dissipative particle dynamics (DPD) force fields was developed for phospholipids and peptides. To enhance transferability, this model maps around four heavy atoms and their connected hydrogen atoms into a coarse-grained elementary bead based on functional group. The effective hybrid potential between any pair of beads is composed of a short-range repulsive soft-core potential that directly adopts the form of an explicit-solvent DPD model and a long-range attractive hydrophobic potential. The parameters of the attractive potentials for lipid molecules were obtained by fitting the explicit-solvent DPD simulation of one bead of any type in a water box, then finely tuning it until the bilayer membrane properties obtained in the explicit-solvent model were matched. These parameters were further extended to amino acids according to bead type. The structural and elastic properties of bilayer membranes, free energy profiles for a lipid flip-flop and amino acid analogues translocating across the membrane, and membrane pore formation induced by antimicrobial peptides obtained from this solvent-free DPD force field considerably agreed with the explicit-solvent DPD results. Importantly, the efficiency of this method is guaranteed to accelerate the assembly of vesicles composed of several thousand lipids by up to 50-fold, rendering the experimental liposome dynamics as well as membrane-peptide interactions feasible at accessible computational expense.
机译:为磷脂和肽开发了一种新的高效无溶剂耗散粒子动力学(DPD)力领域。为了提高可转移性,该模型围绕四个重原子及其连接的氢原子映射到基于官能团的粗粒基本珠子。任何一对珠子之间的有效混合电位由短距离排斥的软核电位组成,该电位直接采用明确溶剂DPD模型的形式和远程有吸引力的疏水潜力。通过将任何类型的任何类型的珠子的明确溶剂DPD模拟拟合在水箱中的明确溶剂DPD模拟,然后精细调节脂质分子的有吸引力的潜力的参数,直到匹配明确溶剂模型中获得的双层膜特性。根据珠粒型进一步向氨基酸进一步扩展这些参数。双层膜的结构和弹性性质,用于脂质触发器的自由能量和穿过膜上的氨基酸类似物,并通过从这种无溶剂的DPD力场获得的抗微生物肽诱导的膜孔形成显着同意显式 - 溶剂DPD结果。重要的是,保证了该方法的效率,以加速由几千次脂质组成的囊泡组装高达50倍,使实验性脂质体动力学以及可行的计算费用可行的膜 - 肽相互作用。

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