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基于靶点和配体的联合药物设计方法作为定义人 A3 腺苷受体拮抗剂新型 3D 药效团模型的工具:吡唑并[4,3-e]1,2,4-三唑并[1,5-c]嘧啶衍生物作为关键研究。

Combined target-based and ligand-based drug design approach as a tool to define a novel 3D-pharmacophore model of human A3 adenosine receptor antagonists: pyrazolo[4,3-e]1,2,4-triazolo[1,5-c]pyrimidine derivatives as a key study.

作者信息

Moro Stefano, Braiuca Paolo, Deflorian Francesca, Ferrari Cristina, Pastorin Giorgia, Cacciari Barbara, Baraldi Pier Giovanni, Varani Katia, Borea Pier Andrea, Spalluto Giampiero

机构信息

Molecular Modeling Section, Dipartimento di Scienze Farmaceutiche, Università di Padova, Via Marzolo 5, I-35131 Padova, Italy.

出版信息

J Med Chem. 2005 Jan 13;48(1):152-62. doi: 10.1021/jm049662f.

Abstract

A combined target-based and ligand-based drug design approach has been carried out to define a novel pharmacophore model of the human A(3) receptor antagonists. High throughput molecular docking and comparative molecular field analysis (CoMFA) have been used in tandem to assemble a new target based pharmacophore model. In parallel, to provide more accurate information about the putative binding site of these A(3) inhibitors, a rhodopsin-based model of the human A(3) receptor was built and a novel Y-shape binding motif has been proposed. Docking-based structure superimposition has been used to perform a quantitative study of the structure-activity relationships for binding of these pyrazolo-triazolo-pyrimidines to adenosine A(3) receptor using CoMFA. Both steric and the electrostatic contour plots obtained from the CoMFA analysis nicely fit on the hypothetical binding site obtained by molecular docking. On the basis of the combined hypothesis, we have designed, synthesized, and tested 17 new derivatives. Consistently, the predicted K(i) values were very close to the experimental values.

摘要

已开展基于靶点和基于配体的联合药物设计方法,以确定人A(3)受体拮抗剂的新型药效团模型。高通量分子对接和比较分子场分析(CoMFA)已串联使用,以构建新的基于靶点的药效团模型。同时,为了提供有关这些A(3)抑制剂假定结合位点的更准确信息,构建了基于视紫红质的人A(3)受体模型,并提出了一种新型Y形结合基序。基于对接的结构叠加已用于使用CoMFA对这些吡唑并三唑并嘧啶与腺苷A(3)受体结合的构效关系进行定量研究。从CoMFA分析获得的空间和静电等高线图与通过分子对接获得的假设结合位点非常吻合。基于联合假设,我们设计、合成并测试了17种新衍生物。预测的K(i)值与实验值始终非常接近。

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