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局部侧链柔性的高效构象采样

Efficient conformational sampling of local side-chain flexibility.

作者信息

Källblad Per, Dean Philip M

机构信息

Department of Pharmacology, Tennis Court Road, Cambridge CB2 1QJ, UK.

出版信息

J Mol Biol. 2003 Mar 7;326(5):1651-65. doi: 10.1016/s0022-2836(03)00083-4.

Abstract

Side-chain flexibility of ligand-binding sites needs to be considered in the rational design of novel inhibitors. We have developed a method to generate conformational ensembles that efficiently sample local side-chain flexibility from a single crystal structure. The rotamer-based approach is tested here for the S1' pocket of human collagenase-1 (MMP-1), which is known to undergo conformational changes in multiple side-chains upon binding of certain inhibitors. First, a raw ensemble consisting of a large number of conformers of the S1' pocket was generated using an exhaustive search of rotamer combinations on a template crystal structure. A combination of principal component analysis and fuzzy clustering was then employed to successfully identify a core ensemble consisting of a low number of representatives from the raw ensemble. The core ensemble contained geometrically diverse conformers of stable nature, as indicated in several cases by a relative energy lower than that of the minimised template crystal structure. Through comparisons with X-ray crystallography and NMR structural data we show that the core ensemble occupied a conformational space similar to that observed under experimental conditions. The synthetic inhibitor RS-104966 is known to induce a conformational change in the side-chains of the S1' pocket of MMP-1 and could not be docked in the template crystal structure. However, the experimental binding mode was reproduced successfully using members of the core ensemble as the docking target, establishing the usefulness of the method in drug design.

摘要

在新型抑制剂的合理设计中,需要考虑配体结合位点的侧链灵活性。我们已经开发出一种方法来生成构象集合,该方法能从单晶结构中有效地对局部侧链灵活性进行采样。基于旋转异构体的方法在此针对人胶原酶-1(MMP-1)的S1'口袋进行了测试,已知该口袋在某些抑制剂结合时会在多个侧链上发生构象变化。首先,通过在模板晶体结构上对旋转异构体组合进行穷举搜索,生成了由大量S1'口袋构象体组成的原始集合。然后采用主成分分析和模糊聚类相结合的方法,成功地从原始集合中识别出一个由少量代表构象体组成的核心集合。核心集合包含几何形状多样的稳定构象体,在几种情况下,其相对能量低于最小化模板晶体结构的能量,表明了这一点。通过与X射线晶体学和核磁共振结构数据的比较,我们表明核心集合占据的构象空间与实验条件下观察到的相似。已知合成抑制剂RS-104966会诱导MMP-1的S1'口袋侧链发生构象变化,并且无法对接至模板晶体结构中。然而,以核心集合的成员作为对接靶点,成功地重现了实验结合模式,确立了该方法在药物设计中的实用性。

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