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Development of force field parameters for oxyluciferin on its electronic ground and excited states

机译:氧荧光素在其电子基态和激发态下的力场参数的发展

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摘要

Construction of force field parameters of the oxyluciferin molecule on its electronic ground and excited states is presented. Several new approaches are introduced for more reliable parameterization: argon-scanning, Hessian matching, and constrained-group parameterization. The Ar-scanning approach is for fitting Lennard-Jones parameters so that the constructed force field can mimic the changes in ab initio energy of oxyluciferin-argon pair at various argon positions. The Hessian matching procedure is to closely reproduce the second derivative matrix of the bonded interaction terms of the force field functions, in comparison with the quantum chemically obtained results. The constrained-group algorithm is applied for both of these approaches to enable an automated atom-type-based parameterization. For complete description of the force field of the oxyluciferin molecule, we have also adopted the second order perturbatively corrected one-particle density matrices to obtain the atomic partial charges within the conventional framework of the restrained electrostatic potential fit. With the availability of the full force field parameter sets, the differences in condensed-phase dynamics on the two states can be investigated. As a simple demonstration, molecular dynamics simulations of aqueous oxyluciferin solution have been performed. The surrounding water structures for the two cases are analyzed by inspecting both the static solvent distribution functions as well as time variation of solvent-solute interaction. The contributions of charge-charge and dispersive interactions toward the solvation dynamics are also discussed.
机译:提出了氧化荧光素分子在其电子基态和激发态上的力场参数的构造。为了更可靠地进行参数化,引入了几种新方法:氩扫描,Hessian匹配和约束组参数化。 Ar扫描方法用于拟合Lennard-Jones参数,以便构造的力场可以模拟在各个氩气位置的氧化荧光素-氩气对的从头算能量的变化。与量子化学获得的结果相比,Hessian匹配过程将紧密地复制力场函数的键相互作用项的二阶导数矩阵。将约束组算法应用于这两种方法,以实现基于原子类型的自动参数化。为了完整地描述氧化荧光素分子的力场,我们还采用了二阶微扰校正的单粒子密度矩阵,以在受约束的静电势拟合的常规框架内获得原子部分电荷。利用完整的力场参数集,可以研究两种状态下凝聚相动力学的差异。作为简单的演示,已经进行了氧化荧光素水溶液的分子动力学模拟。通过检查静态溶剂分布函数以及溶剂-溶质相互作用的时间变化,分析了两种情况下的周围水结构。还讨论了电荷-电荷和分散相互作用对溶剂化动力学的贡献。

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