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Generalized essential energy space random walks to more effectively accelerate solute sampling in aqueous environment

机译:广义基本能量空间随机游动可更有效地加速水环境中的溶质采样

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Molecular dynamics sampling can be enhanced via the promoting of potential energy fluctuations, for instance, based on a Hamiltonian modified with the addition of a potential-energy-dependent biasing term. To overcome the diffusion sampling issue, which reveals the fact that enlargement of event-irrelevant energy fluctuations may abolish sampling efficiency, the essential energy space random walk (EESRW) approach was proposed earlier. To more effectively accelerate the sampling of solute conformations in aqueous environment, in the current work, we generalized the EESRW method to a two-dimension-EESRW (2D-EESRW) strategy. Specifically, the essential internal energy component of a focused region and the essential interaction energy component between the focused region and the environmental region are employed to define the two-dimensional essential energy space. This proposal is motivated by the general observation that in different conformational events, the two essential energy components have distinctive interplays. Model studies on the alanine dipeptide and the aspartate-arginine peptide demonstrate sampling improvement over the original one-dimension-EESRW strategy; with the same biasing level, the present generalization allows more effective acceleration of the sampling of conformational transitions in aqueous solution. The 2D-EESRW generalization is readily extended to higher dimension schemes and employed in more advanced enhanced-sampling schemes, such as the recent orthogonal space random walk method.
机译:分子动力学采样可以通过促进势能波动来增强,例如,基于添加了势能依赖的偏置项的哈密顿量修正法。为了克服扩散采样问题,该问题揭示了事件无关的能量波动增大可能会消除采样效率的事实,较早提出了基本能量空间随机游走(EESRW)方法。为了更有效地加快在水性环境中溶质构象的采样,在当前工作中,我们将EESRW方法推广到二维EESRW(2D-EESRW)策略。具体地,采用聚焦区域的基本内部能量分量以及聚焦区域与环境区域之间的基本相互作用能分量来定义二维基本能量空间。这项提议是受一般观察的启发而得出的,即在不同的构象事件中,两个基本能量成分具有独特的相互作用。对丙氨酸二肽和天冬氨酸-精氨酸肽的模型研究表明,与原始的一维EESRW策略相比,样品的改进。在相同的偏置水平下,本发明可以更有效地加速水溶液中构象转变的采样。 2D-EESRW泛化易于扩展到更高维度的方案,并用于更高级的增强采样方案,例如最近的正交空间随机游走法。

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