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首页> 外文期刊>Journal of Medicinal Chemistry >Evaluation of docking functions for protein-ligand docking.
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Evaluation of docking functions for protein-ligand docking.

机译:评估蛋白质-配体对接的对接功能。

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摘要

Docking functions are believed to be the essential component of docking algorithms. Both physically and statistically based functions have been proposed, but there is no consensus about their relative performances. Here, we propose an evaluation approach based on exhaustive enumeration of all possible docking solutions obtained with a discretized description of a rigid docking process. We apply the approach to study both molecular mechanics and statistical potentials. It is found that the statistical potential evaluated is less effective than the AMBER molecular mechanics function to provide an accurate description of the docking process when the exact experimental coordinates are used. However, when coordinates of crystal structures obtained with analogous ligands are used, similar performances are obtained in both cases. Possible reasons for the successes and failures of both docking schemes have been uncovered using linear discriminant analysis, on the basis of a set of physicochemical descriptors capturing the main physical effects at play during protein-ligand docking. In both types of potentials steric effects appear critical to obtain a successful docking. Our results also indicate that neglecting desolvation effects and the explicit treatment of hydrogen bonds are the main source of the failures observed with the molecular mechanics potential. On the other hand, detailed consideration of steric interactions, with a careful treatment of dispersive forces, seems to be needed when using statistical potentials derived from a structural database. The possibility of filtering combinatorial libraries in order to maximize the probability of correct docking is discussed.
机译:对接功能被认为是对接算法的基本组成部分。已经提出了基于物理和统计的功能,但是关于它们的相对性能尚未达成共识。在这里,我们提出了一种评估方法,该方法基于对所有可能的对接解决方案的详尽列举,并给出了刚性对接过程的离散化描述。我们应用该方法来研究分子力学和统计潜力。发现使用精确的实验坐标时,所评估的统计潜力不如AMBER分子力学功能有效地提供对接过程的准确描述。然而,当使用由类似的配体获得的晶体结构的坐标时,在两种情况下都获得类似的性能。使用线性判别分析发现了两种对接方案成功或失败的可能原因,这是基于一组理化描述符来捕获蛋白质-配体对接过程中的主要物理作用。在两种类型的电位中,空间效应对于成功完成对接而言都是至关重要的。我们的结果还表明,忽略去溶剂化作用和对氢键的显式处理是观察到分子力学潜能失败的主要原因。另一方面,当使用从结构数据库获得的统计势时,似乎需要仔细考虑空间相互作用,并仔细地处理分散力。讨论了过滤组合库以最大可能正确对接的可能性的可能性。

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