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A Polarizable Atomic Multipole-Based Force Field for Molecular Dynamics Simulations of Anionic Lipids

机译:可极化的基于多极子的力场用于阴离子脂质分子动力学模拟

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摘要

In all of the classical force fields, electrostatic interaction is simply treated and explicit electronic polarizability is neglected. The condensed-phase polarization, relative to the gas-phase charge distributions, is commonly accounted for in an average way by increasing the atomic charges, which remain fixed throughout simulations. Based on the lipid polarizable force field DMPC and following the same framework as Atomic Multipole Optimized Energetics for BiomoleculAr (AMOEBA) simulation, the present effort expands the force field to new anionic lipid models, in which the new lipids contain DMPG and POPS. The parameters are compatible with the AMOEBA force field, which includes water, ions, proteins, etc. The charge distribution of each atom is represented by the permanent atomic monopole, dipole and quadrupole moments, which are derived from the ab initio gas phase calculations. Many-body polarization including the inter- and intramolecular polarization is modeled in a consistent manner with distributed atomic polarizabilities. Molecular dynamics simulations of the two aqueous DMPG and POPS membrane bilayer systems, consisting of 72 lipids with water molecules, were then carried out to validate the force field parameters. Membrane width, area per lipid, volume per lipid, deuterium order parameters, electron density profile, electrostatic potential difference between the center of the bilayer and water are all calculated, and compared with limited experimental data.
机译:在所有经典力场中,静电相互作用都得到了简单处理,而显着的电子极化率却被忽略了。相对于气相电荷分布,凝聚相极化通常以平均方式通过增加原子电荷来解决,原子电荷在整个模拟过程中保持固定。基于脂质可极化力场DMPC,并遵循与生物分子多极优化能量学(AMOEBA)模拟相同的框架,目前的工作将力场扩展到新的阴离子脂质模型,其中新脂质包含DMPG和POPS。这些参数与AMOEBA力场兼容,该AMOEBA力场包括水,离子,蛋白质等。每个原子的电荷分布由永久原子单极,偶极和四极矩表示,这是从头算气相计算得出的。包括分子间和分子内极化在内的多体极化以一致的方式建模,具有分布的原子极化率。然后进行了两个水性DMPG和POPS膜双层系统的分子动力学模拟,该系统由72个带有水分子的脂质组成,以验证力场参数。计算膜宽度,每个脂质的面积,每个脂质的体积,氘的有序参数,电子密度分布,双层中心与水之间的静电势差,并与有限的实验数据进行比较。

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