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Convergence of folding free energy landscapes via application of enhanced sampling methods in a distributed computing environment

机译:通过在分布式计算环境中应用增强的采样方法,可折叠自由能源格局的收敛

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e have implemented the serial replica exchange method (SREM) and simulated tempering (ST) enhanced sampling algorithms in a global distributed computing environment. Here we examine the helix-coil transition of a 21 residue alpha-helical peptide in explicit solvent. For ST, we demonstrate the efficacy of a new method for determining initial weights allowing the system to perform a random walk in temperature space based on short trial simulations. These weights are updated throughout the production simulation by an adaptive weighting method. We give a detailed comparison of SREM, ST, as well as standard MD and find that SREM and ST give equivalent results in reasonable agreement with experimental data. In addition, we find that both enhanced sampling methods are much more efficient than standard MD simulations. The melting temperature of the Fs peptide with the AMBER99 phi potential was calculated to be about 310 K, which is in reasonable agreement with the experimental value of 334 K. We also discuss other temperature dependent properties of the helix-coil transition. Although ST has certain advantages over SREM, both SREM and ST are shown to be powerful methods via distributed computing and will be applied extensively in future studies of complex bimolecular systems. (C) 2008 American Institute of Physics.
机译:e在全球分布式计算环境中实现了串行副本交换方法(SREM)和模拟回火(ST)增强采样算法。在这里,我们检查了显式溶剂中21个残基的α-螺旋肽的螺旋-螺旋过渡。对于ST,我们演示了一种用于确定初始权重的新方法的功效,该方法使系统可以基于短期试验仿真在温度空间中执行随机游动。这些权重通过自适应加权方法在整个生产模拟中进行更新。我们对SREM,ST和标准MD进行了详细的比较,发现SREM和ST给出的结果与实验数据合理吻合。此外,我们发现这两种增强的采样方法都比标准的MD模拟有效得多。具有AMBER99 phi电位的Fs肽的解链温度经计算约为310 K,与334 K的实验值合理吻合。我们还讨论了螺旋-螺旋转变的其他温度依赖性。尽管ST相对于SREM具有某些优势,但通过分布式计算显示SREM和ST都是强大的方法,并且将广泛用于将来的复杂双分子系统研究中。 (C)2008美国物理研究所。

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