首页> 外文期刊>Journal of Medicinal Chemistry >New 4-point pharmacophore method for molecular similarity and diversity applications: overview of the method and applications, including a novel approach to the design of combinatorial libraries containing privileged substructures.
【24h】

New 4-point pharmacophore method for molecular similarity and diversity applications: overview of the method and applications, including a novel approach to the design of combinatorial libraries containing privileged substructures.

机译:用于分子相似性和多样性应用的新的4点药效团方法:方法和应用概述,包括一种设计包含特权子结构的组合文库的新颖方法。

获取原文
获取原文并翻译 | 示例
           

摘要

A new 4-point pharmacophore method for molecular similarity and diversity that rapidly calculates all potential pharmacophores/pharmacophoric shapes for a molecule or a protein site is described. The method, an extension to the ChemDiverse/Chem-X software (Oxford Molecular, Oxford, England), has also been customized to enable a new internally referenced measure of pharmacophore diversity. The "privileged" substructure concept for the design of high-affinity ligands is presented, and an example of this new method is described for the design of combinatorial libraries for 7-transmembrane G-protein-coupled receptor targets, where "privileged" substructures are used as special features to internally reference the pharmacophoric shapes. Up to 7 features and 15 distance ranges are considered, giving up to 350 million potential 4-point 3D pharmacophores/molecule. The resultant pharmacophore "key" ("fingerprint") serves as a powerful measure for diversity or similarity, calculable for both a ligand and a protein site, and provides a consistent frame of reference for comparing molecules, sets of molecules, and protein sites. Explicit "on-the-fly" conformational sampling is performed for a molecule to enable the calculation of all geometries accessible for all combinations of four features (i.e., 4-point pharmacophores) at any desired sampling resolution. For a protein site, complementary site points to groups displayed in the site are generated and all combinations of four site points are considered. In this paper we report (i) the details of our customized implementation of the method and its modification to systematically measure 4-point pharmacophores relative to a "special" substructure of interest present in the molecules under study; (ii) comparisons of 3- and 4-point pharmacophore methods, highlighting the much increased resolution of the 4-point method; (iii) applications of the 4-point potential pharmacophore descriptors as a new measure of molecular similarity and diversity and for the design of focused/biased combinatorial libraries.
机译:描述了一种用于分子相似性和多样性的新的4点药效团方法,该方法可以快速计算分子或蛋白质位点的所有潜在药效团/药效团形状。该方法是ChemDiverse / Chem-X软件(Oxford Molecular,牛津,英国)的扩展,也已进行了定制,以实现一种新的内部参照的药效团多样性测量方法。提出了用于设计高亲和力配体的“特权”子结构概念,并描述了这种新方法的示例,用于设计7个跨膜G蛋白偶联受体靶标的组合文库,其中“特权”子结构是用作内部引用药效学形状的特殊功能。最多考虑7个特征和15个距离范围,最多可提供3.5亿个潜在的4点3D药效团/分子。所得药效团“键”(“指纹”)可作为衡量多样性或相似性的有效方法,可针对配体和蛋白质位点进行计算,并为比较分子,分子组和蛋白质位点提供了一致的参考框架。对分子进行显式“即时”构象采样,以能够以任何所需的采样分辨率计算出四个特征(即4点药效基团)的所有组合可访问的所有几何形状。对于蛋白质位点,将生成与该位点中显示的组互补的位点,并考虑四个位点的所有组合。在本文中,我们报告(i)该方法的定制实现及其对系统地测量4点药效基团相对于研究分子中存在的“特殊”感兴趣亚结构的修饰的细节; (ii)3点和4点药效团方法的比较,突显了4点法的分辨率大大提高; (iii)4点潜在药效基团描述符的应用作为分子相似性和多样性的一种新方法,并用于设计聚焦/偏向组合文库。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号