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Combined Docking with Classical Force Field and Quantum Chemical Semiempirical Method PM7

机译:经典力场与量子化学半经验方法相结合的对接

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摘要

Results of the combined use of the classical force field and the recent quantum chemical PM7 method for docking are presented. Initially the gridless docking of a flexible low molecular weight ligand into the rigid target protein is performed with the energy function calculated in the MMFF94 force field with implicit water solvent in the PCM model. Among several hundred thousand local minima, which are found in the docking procedure, about eight thousand lowest energy minima are chosen and then energies of these minima are recalculated with the recent quantum chemical semiempirical PM7 method. This procedure is applied to 16 test complexes with different proteins and ligands. For almost all test complexes such energy recalculation results in the global energy minimum configuration corresponding to the ligand pose near the native ligand position in the crystalized protein-ligand complex. A significant improvement of the ligand positioning accuracy comparing with MMFF94 energy calculations is demonstrated.
机译:提出了经典力场与最近的量子化学PM7结合使用对接的结果。最初,使用在MMFF94力场中计算的能量函数和PCM模型中的隐式水溶剂,将柔性低分子量配体无网格对接到刚性目标蛋白中。在对接过程中发现的数十万个局部最小值中,选择了约八千个最低能量最小值,然后使用最新的量子化学半经验PM7方法重新计算这些最小值的能量。该程序适用于16种具有不同蛋白质和配体的测试复合物。对于几乎所有的测试复合物,这样的能量重新计算导致整体能量最小构型,其对应于结晶的蛋白质-配体复合物中天然配体位置附近的配体姿势。与MMFF94能量计算相比,证明了配体定位精度的显着提高。

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