首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >An Anisotropic Coarse-Grained Model Based on Gay-Berne and Electric Multipole Potentials and its Application to Simulate a DMPC Bilayer in an Implicit Solvent Model
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An Anisotropic Coarse-Grained Model Based on Gay-Berne and Electric Multipole Potentials and its Application to Simulate a DMPC Bilayer in an Implicit Solvent Model

机译:基于盖伊-伯恩和多极电势的各向异性粗粒化模型及其在隐式溶剂模型中模拟DMPC双层的应用

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In this work, we aim at optimizing the performance of the anisotropic GBEMP model, which adopts a framework by combining a Gay-Berne (GB) anisotropic potential with an electric multipole (EMP) potential, in simulating a DMPC lipid bilayer in an implicit solvent model. First, the Gay-Berne parameters were initially obtained by fitting to atomistic profiles of van der Waals interactions between homodimers of molecular fragments while EMP parameters was directly derived from the expansion of point multipoles at predefined EMP sites. Second, the GB and EMP parameters for DMPC molecule were carefully optimized to be comparable to AMBER atomistic model in the calculations of the dipole moments of DMPC monomers adopting different conformations as well as the nonbonded interactions between two DMPC molecules adopting different conformations and separated at various distances. Finally, the GB parameters for DMPC were slightly adjusted in simulating a 72 DMPC bilayer system so that our GBEMP model would be able to reproduce a few important structural properties, namely, thickness (DHH), area per lipid ( AL) and volume per lipid ( VL). Meanwhile, the atomistic and experimental results for electron density profiles and order parameters were reproduced reasonably well by the GBEMP model, demonstrating the promising feature of GBEMP model in modeling lipid systems. Finally, we have shown that current GBEMP model is more efficient by a factor of about 25 than AMBER atomistic point charge model. (c) 2015 Wiley Periodicals, Inc.
机译:在这项工作中,我们旨在优化各向异性GBEMP模型的性能,该模型采用通过将Gay-Berne(GB)各向异性电势与电多极(EMP)电势相结合来模拟隐含溶剂中的DMPC脂质双层的框架模型。首先,Gay-Berne参数最初是通过拟合分子片段同二聚体之间的范德华相互作用的原子分布图而获得的,而EMP参数则直接来自于预先定义的EMP位点上的多极点的扩展。其次,在计算采用不同构象的DMPC单体的偶极矩以及采用不同构象并以不同构型分离的两个DMPC分子之间的非键相互作用时,精心优化了DMPC分子的GB和EMP参数,使其可与AMBER原子模型相比较。距离。最后,在模拟72个DMPC双层系统时,对DMPC的GB参数进行了略微调整,因此我们的GBEMP模型将能够重现一些重要的结构特性,即厚度(DHH),每个脂质的面积(AL)和每个脂质的体积(VL)。同时,GBEMP模型较好地再现了电子密度分布和有序参数的原子和实验结果,证明了GBEMP模型在脂质系统建模中的有前途的功能。最后,我们表明,当前的GBEMP模型比AMBER原子点电荷模型效率高出约25倍。 (c)2015年威利期刊有限公司

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