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Optimized parallel tempering simulations of proteins

机译:优化的蛋白质平行回火模拟

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We apply a recently developed adaptive algorithm that systematically improves the efficiency of parallel tempering or replica exchange methods in the numerical simulation of small proteins. Feedback iterations allow us to identify an optimal set of temperatures/replicas which are found to concentrate at the bottlenecks of the simulations. A measure of convergence for the equilibration of the parallel tempering algorithm is discussed. We test our algorithm by simulating the 36-residue villin headpiece subdomain HP-36 where we find a lowest-energy configuration with a root-mean-square deviation of less than 4 A to the experimentally determined structure.
机译:我们应用了最近开发的自适应算法,该算法在小蛋白的数值模拟中系统地提高了平行回火或复制品交换方法的效率。反馈迭代使我们能够确定一组最佳的温度/副本,这些温度/副本集中在模拟的瓶颈处。讨论了一种用于平衡回火算法的收敛方法。我们通过模拟36个残基的villin头戴式子域HP-36来测试我们的算法,在该域中,我们找到了最低能量配置,与实验确定的结构的均方根偏差小于4A。

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