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Optimization of Alchemical Pathways Using Extended Thermodynamic Integration

机译:延长热力学集成的炼金术途径优化

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Thermodynamic integration (TI) is a commonly used method to determine free-energy differences. One of its disadvantages is that many intermediate λ-states need to be sampled in order to be able to integrate accurately over ??H /?λ?. Here, we use the recently introduced extended TI to study alternative parameterizations of H (λ) and its influence on the smoothness of the ??H /?λ? curves as well as the efficiency of the simulations. We find that the extended TI approach can be used to select curves of low curvature. An optimal parameterization is suggested for the calculation of hydration free energies. For calculations of relative binding free energies, we show that optimized parameterizations of the Hamiltonian in the unbound state also effectively lower the curvature in the bound state of the ligand.
机译:热力学积分(TI)是测定自由能差的常用方法。它的缺点之一是需要对许多中间λ-态进行采样,以便能够在??上精确积分 H/?λ?. 在这里,我们使用最近引入的扩展TI来研究H(λ)的替代参数化及其对β平滑度的影响 H/?λ? 曲线以及模拟的效率。我们发现,扩展的TI方法可用于选择低曲率曲线。提出了计算水化自由能的最佳参数化方法。对于相对结合自由能的计算,我们表明,未束缚态哈密顿量的优化参数化也有效地降低了配体束缚态的曲率。

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