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使用药效团模型鉴定GABAA受体苯二氮䓬结合位点的新型配体。

The use of a pharmacophore model for identification of novel ligands for the benzodiazepine binding site of the GABAA receptor.

作者信息

Kahnberg Pia, Howard Michael H, Liljefors Tommy, Nielsen Mogens, Nielsen Elsebet Østergaard, Sterner Olov, Pettersson Ingrid

机构信息

Department of Organic and Bioorganic Chemistry, Lund University, P.O.Box 124, S-22100 Lund, Sweden.

出版信息

J Mol Graph Model. 2004 Dec;23(3):253-61. doi: 10.1016/j.jmgm.2004.06.003.

Abstract

A Catalyst pharmacophore model has been developed for the benzodiazepine site within the GABA(A) receptor complex. The model is based on a pharmacophore model originally proposed by Cook and co-workers (Drug Des. Discovery 1995, 12, 193-248) and further developed by Kahnberg et al. (J. Med. Chem. 2002, 45, 4188-4201). The Catalyst pharmacophore model has been validated by using a series of flavonoids with varying affinities for the benzodiazepine receptor and has then been used as a search query in database searching with the aim of finding novel structures which have the possibility to be modified into novel lead compounds. Five of the hits from the database searching were purchased and their affinities for the benzodiazepine site of the GABA(A) receptor were determined. Two of the compounds displayed K(i) values below 10 microM. The substance showing highest potency in-vitro displayed an affinity of 121 nM making it an interesting compound for optimization. The false positive compounds (K(i) values >10 microM affinities) have been analysed in terms of conformational energy penalties and possibilities for hydrogen bond interactions. The analysis clearly demonstrates the need for post processing of Catalyst hits.

摘要

已针对GABA(A)受体复合物中的苯二氮䓬位点开发了一种催化剂药效团模型。该模型基于库克及其同事最初提出的药效团模型(《药物设计与发现》,1995年,第12卷,第193 - 248页),并由卡恩伯格等人进一步完善(《药物化学杂志》,2002年,第45卷,第4188 - 4201页)。通过使用一系列对苯二氮䓬受体具有不同亲和力的黄酮类化合物对催化剂药效团模型进行了验证,然后将其用作数据库搜索中的查询项,目的是寻找有可能被修饰成新型先导化合物的新结构。从数据库搜索中筛选出的五个命中化合物被购买,并测定了它们对GABA(A)受体苯二氮䓬位点的亲和力。其中两个化合物的K(i)值低于10微摩尔。体外显示出最高效力的物质的亲和力为121纳摩尔,使其成为一个有优化价值的有趣化合物。已根据构象能量罚分和氢键相互作用的可能性对假阳性化合物(K(i)值 > 10微摩尔亲和力)进行了分析。分析清楚地表明了对催化剂命中结果进行后处理的必要性。

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