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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Implicit Solvation Using the Superposition Approximation (IS-SPA): Extension to Peptides in a Polar Solvent
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Implicit Solvation Using the Superposition Approximation (IS-SPA): Extension to Peptides in a Polar Solvent

机译:使用叠加近似(IS-SPA)的隐含溶剂:延伸到极性溶剂中的肽

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Efficient, accurate, and adaptable implicit solvent models remain a significant challenge in the field of molecular simulation. A recent implicit solvent model, IS-SPA, based on approximating the mean solvent force using the superposition approximation, provides a platform to achieve these goals. IS-SPA was originally developed to handle nonpolar solutes in a polar solvent and did not accurately capture polar solvation. Here, we demonstrate that IS-SPA can accurately capture polar solvation by incorporating solvent orientation and accounting for the contributions from long ranged electrostatics. Solvent orientation is approximated as that of an ideal dipole aligned in a mean electrostatic field and an analytic form of the long ranged electrostatics is derived. Parameters for the model are calculated from explicit solvent simulations of an isolated atom or molecule and include atom-based solvent densities, mean electric field functions, radially symmetric averaged Lennard-Jones forces, and multipoles of the explicit solvent model. Using these parameters, IS-SPA accounts for asymmetry of charge solvation and reproduces the explicit solvent potential of mean force of dimerization of two oppositely charged Lennard-Jones spheres in chloroform with high fidelity. Additionally, the model more accurately captures the effect of explicit solvent on the monomer and dimer configurations of alanine dipeptide in chloroform than a generalized Born or constant density dielectric model. The current version of the algorithm is expected to outperform explicit solvent simulations for aggregation of small peptides at concentrations below 150 mM, well above the typical experimental concentrations for these materials.
机译:高效、准确、适应性强的隐式溶剂模型仍然是分子模拟领域的一个重大挑战。最近的隐式溶剂模型IS-SPA基于叠加近似近似平均溶剂力,为实现这些目标提供了一个平台。IS-SPA最初开发用于处理极性溶剂中的非极性溶质,并没有准确捕捉极性溶剂化。在这里,我们证明了IS-SPA可以通过结合溶剂定向并考虑长程静电的贡献来准确捕捉极性溶剂化。将溶剂取向近似为在平均静电场中排列的理想偶极子取向,导出了长程静电的解析形式。该模型的参数由孤立原子或分子的显式溶剂模拟计算得出,包括基于原子的溶剂密度、平均电场函数、径向对称平均Lennard-Jones力和显式溶剂模型的多极子。利用这些参数,IS-SPA解释了电荷溶剂化的不对称性,并高保真地再现了两个带相反电荷的Lennard-Jones球体在氯仿中二聚化平均力的显式溶剂势。此外,与广义玻恩或恒密度介电模型相比,该模型更准确地捕捉了显式溶剂对氯仿中丙氨酸二肽的单体和二聚体构型的影响。对于浓度低于150 mM的小肽聚集,当前版本的算法预计优于显式溶剂模拟,远高于这些材料的典型实验浓度。

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