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Evaluation of Geometric Complementarity between Molecular Surfaces Using Compactly Supported Radial Basis Functions

机译:利用紧支撑径向基函数评估分子表面之间的几何互补性

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One of the challenges faced by all molecular docking algorithms is that of being able to discriminate between correct results and false positives obtained in the simulations. The scoring or energetic function is the one that must fulfill this task. Several scoring functions have been developed and new methodologies are still under development. In this paper, we have employed the Compactly Supported Radial Basis Functions (CSRBF) to create analytical representations of molecular surfaces, which are then included as key components of a new scoring function for molecular docking. The method proposed here achieves a better ranking of the solutions produced by the program DOCK, as compared with the ranking done by its native contact scoring function. Our new analytical scoring function based on CSRBF can be easily included in different available docking programs as a reliable and quick filter in large-scale docking simulations.
机译:所有分子对接算法面临的挑战之一是如何区分正确结果和在仿真中获得的假阳性结果。计分或精力充沛的功能是必须完成这项任务的功能。已经开发了几种评分功能,并且仍在开发新的方法。在本文中,我们采用了紧密支持的径向基函数(CSRBF)来创建分子表面的解析表示,然后将其包含为分子对接的新评分功能的关键组成部分。与通过其本机接触评分功能进行的排名相比,此处提出的方法可以更好地对DOCK程序产生的解决方案进行排名。我们基于CSRBF的新分析评分功能可以轻松地包含在不同的可用对接程序中,作为大规模对接仿真中的可靠且快速的过滤器。

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