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通过相关正常模式在配体对接中体现受体灵活性。

Representing receptor flexibility in ligand docking through relevant normal modes.

作者信息

Cavasotto Claudio N, Kovacs Julio A, Abagyan Ruben A

机构信息

Molsoft LLC, 3366 North Torrey Pines Court, Suite 300, La Jolla, California 92037, USA.

出版信息

J Am Chem Soc. 2005 Jul 6;127(26):9632-40. doi: 10.1021/ja042260c.

Abstract

Inspired by the current representation of the ligand-receptor binding process, a normal-mode-based methodology is presented to incorporate receptor flexibility in ligand docking and virtual screening. However, the systematic representation of the deformation space grows geometrically with the number of modes, and furthermore, midscale loop rearrangements like those found in protein kinase binding pockets cannot be accounted for with the first lowest-frequency modes. We thus introduced a measure of relevance of normal modes on a given region of interest and showed that only very few modes in the low-frequency range are necessary and sufficient to describe loop flexibility in cAMP-dependent protein kinase. We used this approach to generate an ensemble of representative receptor backbone conformations by perturbing the structure along a combination of relevant modes. Each ensemble conformation is complexed with known non-native binders to optimize the position of the binding-pocket side chains through a full flexible docking procedure. The multiple receptor conformations thus obtained are used in a small-scale virtual screening using receptor ensemble docking. We evaluated this algorithm on holo and apo structures of cAMP-dependent protein kinase that exhibit backbone rearrangements on two independent loop regions close to the binding pocket. Docking accuracy is improved, since the ligands considered in the virtual screening docked within 1.5 A to at least one of the structures. The discrimination between binders and nonbinders is also enhanced, as shown by the improvement of the enrichment factor. This constitutes a new step toward the systematic integration of flexible ligand-flexible receptor docking tools in structure-based drug discovery.

摘要

受当前配体 - 受体结合过程表示方法的启发,提出了一种基于正常模式的方法,将受体灵活性纳入配体对接和虚拟筛选中。然而,变形空间的系统表示随着模式数量呈几何增长,此外,像在蛋白激酶结合口袋中发现的中等规模环重排不能用最低频率的前几个模式来解释。因此,我们引入了一种关于给定感兴趣区域正常模式相关性的度量,并表明在低频范围内只有极少数模式对于描述环磷腺苷依赖性蛋白激酶中的环灵活性是必要且充分的。我们使用这种方法通过沿着相关模式的组合扰动结构来生成代表性受体主链构象的集合。每个集合构象与已知的非天然结合剂复合,通过完全灵活的对接程序优化结合口袋侧链的位置。由此获得的多个受体构象用于使用受体集合对接的小规模虚拟筛选。我们在环磷腺苷依赖性蛋白激酶的全酶和无配体结构上评估了该算法,这些结构在靠近结合口袋的两个独立环区域表现出主链重排。对接准确性得到了提高,因为在虚拟筛选中考虑的配体与至少一个结构的对接距离在1.5埃以内。结合剂与非结合剂之间的区分也得到了增强,富集因子的提高表明了这一点。这构成了在基于结构的药物发现中系统整合灵活配体 - 灵活受体对接工具的新一步。

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