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Systematic placement of structural water molecules for improved scoring of protein–ligand interactions

机译:系统地放置结构水分子以改善蛋白质-配体相互作用的评分

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摘要

Structural water molecules are found in many protein–ligand complexes. They are known to be vital in mediating hydrogen-bonding interactions and, in some cases, key for facilitating tight binding. It is thus very important to consider water molecules when attempting to model protein–ligand interactions for cognate ligand identification, virtual screening and drug design. While the rigid treatment of water molecules present in structures is feasible, the more relevant task of treating all possible positions and orientations of water molecules with each possible ligand pose is computationally daunting. Current methods in molecular docking provide partial treatment for such water molecules, with modest success. Here we describe a new method employing dead-end elimination to place water molecules within a binding site, bridging interactions between protein and ligand. Dead-end elimination permits a thorough, though still incomplete, treatment of water placement. The results show that this method is able to place water molecules correctly within known complexes and to create physically reasonable hydrogen bonds. The approach has also been incorporated within an inverse molecular design approach, to model a variety of compounds in the process of de novo ligand design. The inclusion of structural water molecules, combined with ranking based on the electrostatic contribution to binding affinity, improves a number of otherwise poor energetic predictions.
机译:在许多蛋白质-配体复合物中发现了结构水分子。已知它们在介导氢键相互作用中至关重要,在某些情况下,它们是促进紧密键合的关键。因此,在对蛋白质-配体相互作用进行建模以进行同源配体鉴定,虚拟筛选和药物设计时,考虑水分子非常重要。虽然对结构中存在的水分子进行刚性处理是可行的,但以每个可能的配体姿势处理水分子的所有可能位置和方向的更相关任务在计算上令人生畏。分子对接中的当前方法提供了对这种水分子的部分处理,并取得了一定的成功。在这里,我们描述了一种新的方法,该方法采用末端消除法将水分子置于结合位点内,从而桥接蛋白质和配体之间的相互作用。消除死角可以对水的放置进行彻底的处理,尽管仍然不完全。结果表明,该方法能够将水分子正确放置在已知的配合物中,并产生物理上合理的氢键。该方法也已纳入反向分子设计方法中,以在从头配体设计过程中对多种化合物进行建模。包含结构性水分子,再结合基于静电对结合亲和力的贡献进行排名,可以改善许多其他方面较差的能量预测。

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