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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Hydration Free Energy from Orthogonal Space Random Walk and Polarizable Force Field
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Hydration Free Energy from Orthogonal Space Random Walk and Polarizable Force Field

机译:正交空间随机行走和极化力场的水化自由能

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The orthogonal space random walk (OSRW) method has shown enhanced sampling efficiency in free energy calculations from previous studies. In this study, the implementation of OSRW in accordance with the polarizable AMOEBA force field in TINKER molecular modeling software package is discussed and subsequently applied to the hydration free energy calculation of 20 small organic molecules, among which IS are positively charged and five are neutral. The calculated hydration free energies of these molecules are compared with the results obtained from the Bennett acceptance ratio method using the same force field, and overall an excellent agreement is obtained. The convergence and the efficiency of the OSRW are also discussed and compared with BAR. Combining enhanced sampling techniques such as OSRW with polarizable force fields is very promising for achieving both accuracy and efficiency in general free energy calculations.
机译:正交空间随机游走(OSRW)方法在以往研究的自由能计算中显示出更高的采样效率。在这项研究中,讨论了根据TINKER分子建模软件包中可极化的AMOEBA力场实现OSRW的方法,然后将其应用于20个有机小分子的水合自由能计算,其中IS带正电,五个为中性。将这些分子的计算出的水合自由能与使用相同力场的Bennett接受比率法获得的结果进行比较,总体上获得了极好的一致性。还讨论了OSRW的收敛性和效率,并将其与BAR进行了比较。将OSRW等增强的采样技术与极化力场相结合,对于在常规自由能计算中同时实现准确性和效率非常有希望。

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