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Inherent limitations in protein-protein docking procedures

机译:蛋白质对接程序的固有局限性

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Motivation: The limited success rate of protein-protein docking procedures is generally attributed to structure differences between the bound and unbound states of the molecules. Herein we analyze a large dataset of protein-protein docking results and identify additional parameters that affect the performance of docking procedures.Results: We find that the distinction between nearly correct models (NCMs) and decoys depends on the size of the interface to be predicted thus setting a limit to the prediction ability of docking procedures, particularly those in which the geometric complementarity descriptor is dominant. The geometric complementarity score in grid-based docking carries a large statistical error which further reduces the distinction between NCMs and decoys. We propose a method for correcting the statistical error and show that the distinction is improved when the docking models are ranked by statistically equivalent scores.
机译:动机:蛋白质-蛋白质对接程序成功率有限,通常归因于分子的结合状态和未结合状态之间的结构差异。本文中,我们分析了蛋白质-蛋白质对接结果的大型数据集,并确定了影响对接程序性能的其他参数。结果:我们发现,几乎正确的模型(NCM)与诱饵之间的区别取决于要预测的界面的大小因此,限制了对接程序的预测能力,尤其是那些几何互补性描述符占主导的对接程序。基于网格的对接中的几何互补分数带有较大的统计误差,这进一步减少了NCM和诱饵之间的区别。我们提出了一种校正统计误差的方法,并表明当对接模型按统计上相等的分数排序时,区别得到了改善。

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