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DNA 促旋酶 B 的 ATP 结合位点功能图谱:配体结合共有模型的生成

Functionality maps of the ATP binding site of DNA gyrase B: generation of a consensus model of ligand binding.

作者信息

Schechner Martina, Sirockin Finton, Stote Roland H, Dejaegere Annick P

机构信息

Département de Biologie et Génomique Structurales, IGBMC UMR 7104, Ecole Supérieure de Biotechnologie de Strasbourg, Boulevard S. Brant BP 10413, F-67412 Illkirch, France.

出版信息

J Med Chem. 2004 Aug 26;47(18):4373-90. doi: 10.1021/jm0311184.

Abstract

The Multiple Copy Simultaneous Search method (MCSS) was used to construct consensus functionality maps for functional group binding in the ATP binding site of DNA gyrase B. To account for the conformational flexibility of the protein active site, which involves small side chain fluctuations as well as large-scale loop motions, the calculations were done for three different conformations of the 24 kDa subdomain of DNA gyrase B. A postprocessing procedure that employs a continuum dielectric model to include solvent effects was used to calculate the binding free energy for every functional group. These results were ranked according to their affinity for DNA gyrase B and clustered using a new procedure based on van der Waals contacts that is better adapted for cases where multiple conformations are being considered. A total of 23 different functional groups were tested. The results gave consensus maps that indicate those functional group binding sites that are insensitive to the specific protein conformation. The maps also demonstrate that functional groups other than those found in the known ligands may bind competitively in the binding sites of known ligands. This suggests numerous scaffolds that can be used in the development of new ligands for the ATP and coumarinic binding sites in DNA gyrase B. Finally, the calculations show the existence of alternative binding sites near the known binding sites that could be targeted in the rational design for new inhibitors.

摘要

多拷贝同时搜索方法(MCSS)被用于构建DNA拓扑异构酶B的ATP结合位点中功能基团结合的共有功能图谱。为了考虑蛋白质活性位点的构象灵活性,包括小侧链波动以及大规模环运动,针对DNA拓扑异构酶B的24 kDa亚结构域的三种不同构象进行了计算。采用连续介质模型以纳入溶剂效应的后处理程序用于计算每个功能基团的结合自由能。这些结果根据它们对DNA拓扑异构酶B的亲和力进行排序,并使用基于范德华接触的新程序进行聚类,该程序更适用于考虑多种构象的情况。总共测试了23种不同的功能基团。结果给出的共有图谱表明了那些对特定蛋白质构象不敏感的功能基团结合位点。图谱还表明,除了已知配体中发现的功能基团之外,其他功能基团可能在已知配体的结合位点竞争性结合。这表明了许多可用于开发DNA拓扑异构酶B中ATP和香豆素结合位点新配体的支架。最后,计算结果表明在已知结合位点附近存在可在新抑制剂的合理设计中作为靶点的替代结合位点。

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