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Analysis of Factors Influencing Hydration Site Prediction Based on Molecular Dynamics Simulations

机译:基于分子动力学模拟的水化位点预测影响因素分析

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Water contributes significantly to the binding of small molecules to proteins in biochemical systems. Molecular dynamics (MD) simulation based programs such as WaterMap and WATsite have been used to probe the locations and thermodynamic properties of hydration sites at the surface or in the binding site of proteins generating important information for structure-based drug design. However, questions associated with the influence of the simulation protocol on hydration site analysis remain. In this study, we use WATsite to investigate the influence of factors such as simulation length and variations in initial protein conformations on hydration site prediction. We find that 4 ns MD simulation is appropriate to obtain a reliable prediction of the locations and thermodynamic properties of hydration sites. In addition, hydration site prediction can be largely affected by the initial protein conformations used for MD simulations. Here, we provide a first quantification of this effect and further indicate that similar conformations of binding site residues (RMSD < 0.5 ?) are required to obtain consistent hydration site predictions.
机译:在生化系统中,水显着促进了小分子与蛋白质的结合。基于分子动力学(MD)模拟的程序(例如WaterMap和WATsite)已用于探测蛋白质表面或结合位点中水合位点的位置和热力学性质,从而为基于结构的药物设计生成重要信息。然而,与模拟方案对水合位点分析的影响有关的问题仍然存在。在这项研究中,我们使用WATsite来研究模拟长度和初始蛋白质构象变化等因素对水合位点预测的影响。我们发现4 ns的MD模拟适用于获得水合位点的位置和热力学性质的可靠预测。此外,水合位点的预测可能很大程度上受用于MD模拟的初始蛋白质构象的影响。在这里,我们对这种作用进行了首次量化,并进一步表明需要相同构象的结合位点残基(RMSD <0.5?)才能获得一致的水合位点预测。

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