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通过药效团建模和虚拟筛选发现西格玛1受体、ERG2和埃莫帕明结合蛋白的高亲和力配体。

Discovery of high-affinity ligands of sigma1 receptor, ERG2, and emopamil binding protein by pharmacophore modeling and virtual screening.

作者信息

Laggner Christian, Schieferer Claudia, Fiechtner Birgit, Poles Gloria, Hoffmann Rémy D, Glossmann Hartmut, Langer Thierry, Moebius Fabian F

机构信息

Institute of Pharmacy, Department of Pharmaceutical Chemistry, and Center for Molecular Biosciences (CMBI), University of Innsbruck, Innrain 52, A-6020 Innsbruck, Austria.

出版信息

J Med Chem. 2005 Jul 28;48(15):4754-64. doi: 10.1021/jm049073+.

Abstract

ERG2, emopamil binding protein (EBP), and sigma-1 receptor (sigma(1)) are enzymes of sterol metabolism and an enzyme-related protein, respectively, that share high affinity for various structurally diverse compounds. To discover novel high-affinity ligands, pharmacophore models were built with Catalyst based upon a series of 23 structurally diverse chemicals exhibiting K(i) values from 10 pM to 100 microM for all three proteins. In virtual screening experiments, we retrieved drugs that were previously reported to bind to one or several of these proteins and also tested 11 new hits experimentally, of which three, among them raloxifene, had affinities for sigma(1) or EBP of <60 nM. When used to search a database of 3525 biochemicals of intermediary metabolism, a slightly modified ERG2 pharmacophore model successfully retrieved 10 substrate candidates among the top 28 hits. Our results indicate that inhibitor-based pharmacophore models for sigma(1), ERG2, and EBP can be used to screen drug and metabolite databases for chemically diverse compounds and putative endogenous ligands.

摘要

ERG2、埃莫帕米结合蛋白(EBP)和σ-1受体(σ(1))分别是甾醇代谢酶和一种与酶相关的蛋白质,它们对各种结构不同的化合物具有高亲和力。为了发现新型高亲和力配体,基于一系列23种结构不同的化学物质构建了药效团模型,这些化学物质对所有这三种蛋白质的K(i)值在10 pM至100 μM之间。在虚拟筛选实验中,我们检索到了先前报道的与这些蛋白质中的一种或几种结合的药物,并且还对11个新发现的化合物进行了实验测试,其中三种,包括雷洛昔芬,对σ(1)或EBP的亲和力小于60 nM。当用于搜索3525种中间代谢生物化学物质的数据库时,一个经过略微修改的ERG2药效团模型在前28个命中结果中成功检索到了10个底物候选物。我们的结果表明,基于抑制剂的σ(1)、ERG2和EBP药效团模型可用于筛选药物和代谢物数据库,以寻找化学结构多样的化合物和假定的内源性配体。

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