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一种用于诱导契合对接的灵活方法。

A flexible approach to induced fit docking.

作者信息

Nabuurs Sander B, Wagener Markus, de Vlieg Jacob

机构信息

Center for Molecular and Biomolecular Informatics, Radboud University, Nijmegen, The Netherlands.

出版信息

J Med Chem. 2007 Dec 27;50(26):6507-18. doi: 10.1021/jm070593p. Epub 2007 Nov 22.

Abstract

We present Fleksy, a new approach to consider both ligand and receptor flexibility in small molecule docking. Pivotal to our method is the use of a receptor ensemble to describe protein flexibility. To construct these ensembles, we use a backbone-dependent rotamer library and implement the concept of interaction sampling. The latter allows the evaluation of different orientations of ambivalent interaction partners. The docking stage consists of an ensemble-based soft-docking experiment using FlexX-Ensemble, followed by an effective flexible receptor-ligand complex optimization using Yasara. Fleksy produces a set of receptor-ligand complexes ranked using a consensus scoring function combining docking scores and force field energies. Averaged over three cross-docking datasets, containing 35 different receptor-ligand complexes in total, Fleksy reproduces the observed binding mode within 2.0 A for 78% of the complexes. This compares favorably to the rigid receptor FlexX program, which on average reaches a success rate of 44% for these datasets.

摘要

我们展示了Fleksy,这是一种在小分子对接中同时考虑配体和受体灵活性的新方法。我们方法的关键是使用受体集合来描述蛋白质的灵活性。为了构建这些集合,我们使用了基于骨架的旋转异构体库并实现了相互作用采样的概念。后者允许评估矛盾相互作用伙伴的不同取向。对接阶段包括使用FlexX-Ensemble进行基于集合的软对接实验,随后使用Yasara进行有效的柔性受体-配体复合物优化。Fleksy生成一组受体-配体复合物,使用结合对接分数和力场能量的共识评分函数进行排名。在总共包含35种不同受体-配体复合物的三个交叉对接数据集中进行平均,Fleksy在2.0埃范围内再现了78%复合物的观察到的结合模式。这与刚性受体FlexX程序相比具有优势,对于这些数据集,FlexX程序平均成功率为44%。

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