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首页> 外文期刊>Computational Biology and Bioinformatics, IEEE/ACM Transactions on >On the Characterization and Selection of Diverse Conformational Ensembles with Applications to Flexible Docking
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On the Characterization and Selection of Diverse Conformational Ensembles with Applications to Flexible Docking

机译:不同构象合集的表征与选择及其在柔性对接中的应用

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To address challenging flexible docking problems, a number of docking algorithms pregenerate large collections of candidate conformers. To remove the redundancy from such ensembles, a central problem in this context is to report a selection of conformers maximizing some geometric diversity criterion. We make three contributions to this problem. First, we resort to geometric optimization so as to report selections maximizing the molecular volume or molecular surface area (MSA) of the selection. Greedy strategies are developed, together with approximation bounds. Second, to assess the efficacy of our algorithms, we investigate two conformer ensembles corresponding to a flexible loop of four protein complexes. By focusing on the MSA of the selection, we show that our strategy matches the MSA of standard selection methods, but resorting to a number of conformers between one and two orders of magnitude smaller. This observation is qualitatively explained using the Betti numbers of the union of balls of the selection. Finally, we replace the conformer selection problem in the context of multiple-copy flexible docking. On the aforementioned systems, we show that using the loops selected by our strategy can improve the result of the docking process.
机译:为了解决具有挑战性的灵活对接问题,许多对接算法会预先生成大量候选构象异构体。为了从此类合奏中消除冗余,在此上下文中的主要问题是报告最大化几何某些分集标准的一致性的选择。我们对此问题做出了三点贡献。首先,我们诉诸几何优化,以便报告选择最大化分子选择或分子表面积(MSA)的选择。制定了贪婪策略以及近似范围。其次,要评估我们算法的功效,我们研究了两个构象体合体,它们对应于四个蛋白复合物的柔性环。通过关注选择的MSA,我们证明了我们的策略与标准选择方法的MSA匹配,但是诉诸于较小的构象异构体一个到两个数量级之间。使用选择的球的并集的贝蒂数定性地解释了这种观察。最后,我们在多副本灵活对接的上下文中替换了构象者选择问题。在上述系统上,我们显示了使用我们的策略选择的循环可以改善对接过程的结果。

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