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Coupling Constant pH Molecular Dynamics with Accelerated Molecular Dynamics

机译:恒定pH分子动力学与加速分子动力学的耦合

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摘要

An extension of the constant pH method originally implemented by Mongan et al. (J. Comput. Chem.>2004, 25, 2038−2048) is proposed in this study. This adapted version of the method couples the constant pH methodology with the enhanced sampling technique of accelerated molecular dynamics, in an attempt to overcome the sampling issues encountered with current standard constant pH molecular dynamics methods. Although good results were reported by Mongan et al. on application of the standard method to the hen egg-white lysozyme (HEWL) system, residues which possess strong interactions with neighboring groups tend to converge slowly, resulting in the reported inconsistencies for predicted pKa values, as highlighted by the authors. The application of the coupled method described in this study to the HEWL system displays improvements over the standard version of the method, with the improved sampling leading to faster convergence and producing pKa values in closer agreement to those obtained experimentally for the more slowly converging residues.
机译:Mongan等人最初实施的恒定pH方法的扩展。这项研究建议(J. Comput。Chem。> 2004 ,25,2038−2048)。该方法的这种改进版本将恒定pH方法与增强的分子动力学加速采样技术相结合,试图克服当前标准的恒定pH分子动力学方法遇到的采样问题。尽管Mongan等人报告了良好的结果。正如作者所强调的,在将标准方法应用于鸡蛋蛋白溶菌酶(HEWL)系统时,与相邻基团具有强相互作用的残基趋于缓慢收敛,从而导致报告的预测pKa值不一致。在这项研究中描述的耦合方法在HEWL系统上的应用显示了对该方法标准版本的改进,改进的采样导致更快的收敛,并且产生的pKa值与通过实验获得的较慢收敛的残基更接近。

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