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首页> 外文期刊>The Journal of Chemical Physics >Molecular simulation with variable protonation states at constant pH
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Molecular simulation with variable protonation states at constant pH

机译:在恒定pH下具有可变质子化状态的分子模拟

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A new method is presented for performing molecular simulations at constant pH.The method is a Monte Carlo procedure where trial moves consist of relatively short molecular dynamics trajectories,using a time-dependent potential energy that interpolates between the old and new protonation states.Conformations and protonation states are sampled from the correct statistical ensemble independent of the trial-move trajectory length,which may be adjusted to optimize efficiency.Because moves are not instantaneous,the method does not require the use of a continuum solvation model.It should also be useful in describing buried titratable groups that are not directly exposed to solvent,but have strong interactions with neighboring hydrogen bond partners.The feasibility of the method is demonstrated for a simple test case: constant-pH simulations of acetic acid in aqueous solution with an explicit representation of water molecules.
机译:提出了一种在恒定pH值下进行分子模拟的新方法,该方法是蒙特卡罗程序,其中试验移动由相对短的分子动力学轨迹组成,使用时变势能插值在新旧质子化状态之间。质子化状态是从正确的统计集合中取样的,与试行轨迹的长度无关,可以对其进行调整以优化效率。由于移动不是瞬时的,因此该方法不需要使用连续溶剂化模型。它也应该有用在描述不直接暴露在溶剂中但与相邻氢键伙伴有强相互作用的埋藏可滴定基团的情况下。该方法的可行性在一个简单的测试案例中得到了证明:水溶液中乙酸的恒定pH模拟具有明确的表示形式水分子。

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