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Enhancing Constant-pH Simulation in Explicit Solvent with a Two-Dimensional Replica Exchange Method

机译:使用二维副本交换方法增强显式溶剂中的恒定pH模拟

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We present a new method for enhanced sampling for constant-pH simulations in explicit water based on a two-dimensional (2D) replica exchange scheme. The new method is a significant extension of our previously developed constant-pH simulation method, which is based on enveloping distribution sampling (EDS) coupled with a one-dimensional (1D) Hamiltonian exchange method (HREM). EDS constructs a hybrid Hamiltonian from multiple discrete end state Hamiltonians that, in this case, represent different protonation states of the system. The ruggedness and heights of the hybrid Hamiltonian's energy barriers can be tuned by the smoothness parameter. Within the context of the ID EDS-HREM method, exchanges are performed between replicas with different smoothness parameters, allowing frequent protonation-state transitions and sampling of conformations that are favored by the end-state Hamiltonians. In this work, the 1D method is extended to 2D with an additional dimension, external pH. Within the context of the 2D method (2D EDS-HREM), exchanges are performed on a lattice of Hamiltonians with different pH conditions and smoothness parameters. We demonstrate that both the 1D and 2D methods exactly reproduce the thermodynamic properties of the semigrand canonical (SGC) ensemble of a system at a given pH. We have tested our new 2D method on aspartic acid, glutamic acid, lysine, a four residue peptide (sequence KAAE), and snake cardiotoxin. In all cases, the 2D method converges faster and without loss of precision; the only limitation is a loss of flexibility in how CPU time is employed. The results for snake cardiotoxin demonstrate that the 2D method enhances protonation-state transitions, samples a wider conformational space with the same amount of computational resources, and converges significantly faster overall than the original 1D method.
机译:我们提出了一种新的方法,用于基于二维(2D)复制交换方案的显性水中恒定pH模拟的增强采样。新方法是对我们以前开发的恒定pH模拟方法的重要扩展,该方法基于包络分布采样(EDS)和一维(1D)哈密顿交换方法(HREM)。 EDS从多个离散的最终状态哈密顿量构造一个混合哈密顿量,在这种情况下,哈密顿量表示系统的不同质子化状态。可以通过平滑度参数来调整混合哈密顿能量垒的坚固性和高度。在ID EDS-HREM方法的上下文中,在具有不同平滑度参数的副本之间执行交换,从而允许频繁的质子化状态转换和最终状态哈密顿量偏爱的构象采样。在这项工作中,将一维方法扩展到二维,并增加了外部pH值。在2D方法(2D EDS-HREM)的背景下,在具有不同pH条件和平滑度参数的哈密顿量的晶格上进行交换。我们证明一维和二维方法都可以精确地重现给定pH值下系统的半经典正则(SGC)集成的热力学性质。我们已经对天冬氨酸,谷氨酸,赖氨酸,四残基肽(序列KAAE)和蛇形心毒素测试了我们的新二维方法。在所有情况下,二维方法收敛速度更快,且不会损失精度。唯一的限制是在使用CPU时间方面缺乏灵活性。蛇形心毒素的结果表明,二维方法增强了质子化状态的转换,使用相同的计算资源量对更宽的构象空间进行了采样,并且总体收敛速度明显高于原始的一维方法。

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