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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Replica-Exchange Umbrella Sampling Combined with Gaussian Accelerated Molecular Dynamics for Free-Energy Calculation of Biomolecules
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Replica-Exchange Umbrella Sampling Combined with Gaussian Accelerated Molecular Dynamics for Free-Energy Calculation of Biomolecules

机译:复制 - 交换伞采样结合高斯加速分子动力学的生物分子的自由能计算

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We have developed an enhanced conformational sampling method combining replica-exchange umbrella sampling (REUS) with Gaussian accelerated molecular dynamics (GaMD). REUS enhances the sampling along predefined reaction coordinates, while GaMD accelerates the conformational dynamics by adding a boost potential to the system energy. The method, which we call GaREUS (Gaussian accelerated replica-exchange umbrella sampling), enhances the sampling more efficiently than REUS or GaMD, while the computational resource for GaREUS is the same as that required for REUS. The two-step reweighting procedure using the multistate Bennett acceptance ratio method and the cumulant expansion for the exponential average is applied to the simulation trajectories for obtaining the unbiased free-energy landscapes. We apply GaREUS to the calculations of free-energy landscapes for three different cases: conformational equilibria of N-glycan, folding of chignolin, and conformational change of adenyl kinase. We show that GaREUS speeds up the convergences of free-energy calculations using the same amount of computational resources as REUS. The free-energy landscapes reweighted from the trajectories of GaREUS agree with previously reported ones. GaREUS is applicable to free-energy calculations of various biomolecular dynamics and functions with reasonable computational costs.
机译:我们开发了一种增强的构象采样方法,将副本交换伞采样(REUS)与高斯加速分子动力学(GAMD)相结合。 Reus沿着预定义的反应坐标增强了采样,而GAMD通过向系统能量增加增压潜力来加速构象动态。我们致电Gareus(高斯加速的副本 - 交换伞采样)的方法,比REUS或GAMD更有效地增强了采样,而Gareus的计算资源与REUS所需的计算资源相同。使用多态Bennett接受比例和指数平均值的累积膨胀的两步重新传递程序应用于仿真轨迹,以获得无偏的自由能景观。我们将Gareus应用于三种不同病例的自由能景观的计算:N-Glycan的构象均衡,腺泡蛋白的折叠和腺苷激酶的构象变化。我们表明Gareus使用与REUS相同的计算资源加速自由能计算的收敛。自由能景观从Gareus的轨迹重新推出,同意以前报道的。 Gareus适用于各种生物分子动力学的自由能量计算,具有合理的计算成本。

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