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基于网格的三维药效团 I:FLAPpharm,一种新的药效团解析方法。

GRID-based three-dimensional pharmacophores I: FLAPpharm, a novel approach for pharmacophore elucidation.

机构信息

Molecular Discovery Limited, 215 Marsh Road, Pinner, Middlesex, London HA5 5NE, United Kingdom.

出版信息

J Chem Inf Model. 2012 Oct 22;52(10):2587-98. doi: 10.1021/ci300153d. Epub 2012 Sep 21.

Abstract

Pharmacophore elucidation approaches are routinely used in drug discovery, primarily with the aim of determining the three-dimensional arrangement of common features shared by ligands interacting at the site of interest; these features can then be used to investigate the structure-activity relationship between the ligands and also to screen for other molecules possessing the relevant features. Here we present a novel approach based on GRID molecular interaction fields and the derivative method FLAP that has been previously described, which provides a common reference framework to compare both small molecule ligands and macromolecular protein targets. Unlike classical pharmacophore elucidation approaches that extract simplistic molecular features, determine those which are common across the data set, and use these features to align the structures, FLAPpharm first aligns the structures and subsequently extracts the common interacting features in terms of their molecular interaction fields, pseudofields, and atomic points, representing the common pharmacophore as a more comprehensive pharmacophoric pseudomolecule. The approach is applied to a number of data sets to investigate performance in terms of reproducing the X-ray crystallography-based alignment, in terms of its discriminatory ability when applied to virtual screening and also to illustrate its ability to explain alternative binding modes. In part two of this publication, a comprehensive benchmark data set for pharmacophore elucidation is presented and the performance of FLAPpharm discussed.

摘要

药效团解析方法通常用于药物发现,主要目的是确定在感兴趣的部位相互作用的配体所共有的三维特征的排列方式;然后可以使用这些特征来研究配体之间的结构-活性关系,以及筛选具有相关特征的其他分子。在这里,我们提出了一种新的方法,该方法基于先前描述的 GRID 分子相互作用场和导数方法 FLAP,它提供了一个共同的参考框架来比较小分子配体和大分子蛋白质靶标。与提取简单分子特征、确定数据集共有的特征并使用这些特征来对齐结构的经典药效团解析方法不同,FLAPpharm 首先对齐结构,然后根据分子相互作用场、伪场和原子点提取共同的相互作用特征,代表更全面的药效团伪分子。该方法应用于多个数据集,以研究在基于 X 射线晶体学的对齐方面的重现性能,以及在虚拟筛选方面的区分能力,并说明其解释替代结合模式的能力。在本出版物的第二部分,提出了一个全面的药效团解析基准数据集,并讨论了 FLAPpharm 的性能。

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