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Efficient sampling over rough energy landscapes with high barriers: A combination of metadynamics with integrated tempering sampling

机译:在高障碍的粗糙能源景观上进行高效采样:元动力学与综合回火采样的结合

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In order to efficiently overcome high free energy barriers embedded in a complex energy landscape and calculate overall thermodynamics properties using molecular dynamics simulations, we developed and implemented a sampling strategy by combining the metadynamics with (selective) integrated tempering sampling (ITS/SITS) method. The dominant local minima on the potential energy surface (PES) are partially exalted by accumulating history-dependent potentials as in metadynamics, and the sampling over the entire PES is further enhanced by ITS/SITS. With this hybrid method, the simulated system can be rapidly driven across the dominant barrier along selected collective coordinates. Then, ITS/SITS ensures a fast convergence of the sampling over the entire PES and an efficient calculation of the overall thermodynamic properties of the simulation system. To test the accuracy and efficiency of this method, we first benchmarked this method in the calculation of phi - psi distribution of alanine dipeptide in explicit solvent. We further applied it to examine the design of template molecules for aromatic meta-C-H activation in solutions and investigate solution conformations of the nonapeptide Bradykinin involving slow cis-trans isomerizations of three proline residues. (C) 2016 AIP Publishing LLC.
机译:为了有效克服复杂能源格局中嵌入的高自由能壁垒并使用分子动力学模拟计算总体热力学性质,我们通过将元动力学与(选择性)集成回火采样(ITS / SITS)方法相结合,开发并实施了一种采样策略。像元动力学一样,通过累积依赖历史的势能可以部分提高势能面(PES)上的主要局部极小值,并且通过ITS / SITS进一步增强了整个PES上的采样。使用这种混合方法,可以沿着选定的集体坐标快速驱动模拟系统越过主要障碍。然后,ITS / SITS确保整个PES上的采样快速收敛,并有效计算仿真系统的整体热力学性质。为了测试该方法的准确性和效率,我们首先将该方法在显式溶剂中丙氨酸二肽的phi-psi分布的计算中作为基准。我们进一步将其应用于检查溶液中芳香族meta-C-H活化的模板分子的设计,并研究涉及三个脯氨酸残基的缓慢顺反异构化的九肽缓激肽的溶液构象。 (C)2016 AIP出版有限责任公司。

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