Yongye Austin B, Appel Jon R, Giulianotti Marc A, Dooley Colette T, Medina-Franco Jose L, Nefzi Adel, Houghten Richard A, Martínez-Mayorga Karina
Torrey Pines Institute for Molecular Studies, 11350 SW Village Parkway, Room 132, Port St. Lucie, FL 34987, USA.
Bioorg Med Chem. 2009 Aug 1;17(15):5583-97. doi: 10.1016/j.bmc.2009.06.026. Epub 2009 Jun 21.
Opioid receptors are important targets for pain management. Here, we report the synthesis and biological evaluation of three positional scanning combinatorial libraries, consisting of linear triamines and piperazines. A highly potent (14 nM) and selective (IC(50(mu))/IC(50(kappa))=71; IC(50(delta))/IC(50(kappa))=714) triamine for the kappa-opioid receptor was found. In addition, non-selective mu-kappa binders were obtained, with binding affinities of 54 nM and 22 nM for mu- and kappa-opioid receptors, respectively. Structure-activity relationships of each subset are described. 3D molecular alignments based on shape similarity to internal and external query molecules were carried out. For the combinatorial chemistry dataset studied here a 1.3 similarity cut-off value was observed to be efficient in the rocs-based alignment method. Interactions from the overlays analyzed in the binding sites of homology models of the receptors revealed specific substitution patterns for enhancing binding affinity in the piperazine series. Pharmacophore modeling of the compounds found from the three combinatorial libraries was also performed. The pharmacophore model indicated that the important feature for receptor binding activity with the mu-receptor was the presence of at least one hydrogen bond acceptor and one aromatic hydrophobic group. Whereas for the kappa-receptor two binding modes emerged with one set of compounds employing the hydrogen bond acceptor and aromatic hydrophobic group, and a second set possibly via interactions with the receptor by hydrophobic and ionic salt-bridges.
阿片受体是疼痛管理的重要靶点。在此,我们报告了由线性三胺和哌嗪组成的三个位置扫描组合文库的合成及生物学评价。发现了一种对κ-阿片受体具有高效力(14 nM)和选择性(IC50(μ)/IC50(κ) = 71;IC50(δ)/IC50(κ) = 714)的三胺。此外,还获得了非选择性的μ-κ结合剂,其对μ-和κ-阿片受体的结合亲和力分别为54 nM和22 nM。描述了每个子集的构效关系。基于与内部和外部查询分子的形状相似性进行了三维分子比对。对于此处研究的组合化学数据集,在基于roc的比对方法中观察到1.3的相似性截止值是有效的。在受体同源模型的结合位点分析的叠加相互作用揭示了哌嗪系列中增强结合亲和力的特定取代模式。还对从三个组合文库中发现的化合物进行了药效团建模。药效团模型表明,与μ-受体结合活性的重要特征是至少存在一个氢键受体和一个芳香疏水基团。而对于κ-受体,出现了两种结合模式,一组化合物利用氢键受体和芳香疏水基团,另一组可能通过与受体的疏水和离子盐桥相互作用。