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Efficient Free Energy Calculation of Biomolecules from Diffusion-Biased Molecular Dynamics

机译:基于扩散的分子动力学的生物分子有效自由能计算

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摘要

Recently proposed metadynamics techniques offer an effective means for improving sampling in simulations of complex systems, including polymers and biological macromolecules. One of the drawbacks of such methods has been the absence of well-defined or effective convergence criteria. A solution to this problem is considered here in which an optimal ensemble is introduced to minimize the travel time across the entire order parameter range of interest. The usefulness of the proposed approach is illustrated in the context of two systems consisting of biological molecules dissolved in water. The results presented in this work indicate that the proposed method is considerably faster than other existing algorithms for the study of these systems, and that the corresponding free energy that emerges from the simulations converges to the exact result.
机译:最近提出的元动力学技术为改善复杂系统(包括聚合物和生物大分子)的仿真中的采样提供了有效的手段。这种方法的缺点之一是缺乏明确或有效的收敛标准。本文考虑了此问题的解决方案,其中引入了一个最佳的集成,以使整个感兴趣的整个订购参数范围内的行程时间最小化。在由溶解于水中的生物分子组成的两个系统的背景下说明了所提出方法的有用性。这项工作中提出的结果表明,所提出的方法比研究这些系统的其他现有算法要快得多,并且从仿真中得出的相应自由能收敛到精确结果。

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