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A quantum mechanical polarizable force field for biomolecular interactions

机译:生物分子相互作用的量子力学极化力场

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摘要

We introduce a quantum mechanical polarizable force field (QMPFF) fitted solely to QM data at the MP2/aTZ(-hp) level. Atomic charge density is modeled by point-charge nuclei and floating exponentially shaped electron clouds. The functional form of interaction energy parallels quantum mechanics by including electrostatic, exchange, induction, and dispersion terms. Separate fitting of each term to the counterpart calculated from high-quality QM data ensures high transferability of QMPFF parameters to different molecular environments, as well as accurate fit to a broad range of experimental data in both gas and liquid phases. QMPFF, which is much more efficient than ab initio QM, is optimized for the accurate simulation of biomolecular systems and the design of drugs.
机译:我们介绍了仅适用于MP2 / aTZ(-hp)水平的QM数据的量子机械极化力场(QMPFF)。原子电荷密度是通过点电荷核和浮动的指数形电子云建模的。相互作用能的功能形式通过包括静电,交换,感应和分散项而与量子力学相平行。根据高质量QM数据计算出的每个项与对应项的分别拟合,可确保QMPFF参数在不同分子环境中的高度可传递性,以及对气相和液相中各种实验数据的精确拟合。 QMPFF比从头开始的QM效率要高得多,它已针对生物分子系统的精确模拟和药物设计进行了优化。

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