首页> 外文期刊>Drug design and discovery >Studies of molecular pharmacophore/receptor models for GABAA/benzodiazepine receptor subtypes: binding affinities of substituted beta-carbolines at recombinant alpha x beta 3 gamma 2 subtypes and quantitative structure-activity relationship studies v
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Studies of molecular pharmacophore/receptor models for GABAA/benzodiazepine receptor subtypes: binding affinities of substituted beta-carbolines at recombinant alpha x beta 3 gamma 2 subtypes and quantitative structure-activity relationship studies v

机译:GABAA /苯并二氮杂receptor受体亚型的分子药效基团/受体模型的研究:取代的β-咔啉在重组αxβ3 gamma 2亚型上的结合亲和力和定量构效关系研究v

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摘要

Binding affinities of a series of 44 beta-carbolines with various substituents at the 3-, 4-, 6- and 7-positions are reported at 5 distinct recombinant GABAA/benzodiazepine receptor (BzR) subtypes [alpha x beta 3 gamma 2 (x = 1-3, 5, 6)]. Many of these ligands displayed better selectivity for the alpha 1 containing GABAA isoform. The most selective BCCT 2 and SPH 195 (17) displayed potent affinity (Ki = 0.72 and 7.2 nM for the alpha 1 beta 3 gamma 2 receptor subtype, respectively) and an overall selectivity of 20 and 23 fold, respectively, for the alpha 1 beta 3 gamma 2 receptor subtype. These are the most selective ligands in vitro for the alpha 1 containing GABAA/Bz receptor isoform reported to date to our knowledge. QSAR studies of these ligands for each receptor subtype have been carried out via a Comparative Molecular Field Analysis (CoMFA) and an included volume analysis. Geometries and charge distributions of these ligands have been optimized using ab initio methods (J. Med. Chem., 1992, 35, 4001-4010). Active conformations of flexible 3-alkoxylated beta-carbolines have been examined via a CoMFA approach. QSAR studies via CoMFA support the previous hypothesis that beta-carbolines with different intrinsic activities may follow an alternative alignment rule when they bind into the pharmacophore/receptor site of the BzR. Examination of binding affinities of beta-carbolines by this modeling strategy has established some of the differences, in particular, topologic differences between the lipophilic pockets in the alpha 1 beta 3 gamma 2, alpha 2 beta 3 gamma 2, alpha 3 beta 3 gamma 2, alpha 5 beta 3 gamma 2 and alpha 6 beta 3 gamma 2 subtypes as well as some of the similarities among the pharmacophore/receptor models of these five distinct GABAA/Bz receptor subtypes.
机译:据报道,在5种不同的重组GABAA /苯并二氮杂receptor受体(BzR)亚型中,一系列44种在3、4、6和7位具有多个取代基的β-咔啉的结合亲和力[αxβ3γ2(x = 1-3,5,6)]。这些配体中的许多对含α1的GABAA同工型表现出更好的选择性。选择性最强的BCCT 2和SPH 195(17)显示出强大的亲和力(对于α1 beta 3γ2受体亚型,Ki分别为0.72和7.2 nM),对α1的总体选择性分别为20和23倍。 β3γ2受体亚型。据我们所知,这些是体外对含α1的GABAA / Bz受体同工型最具选择性的配体。已通过比较分子场分析(CoMFA)和包含的体积分析对每种受体亚型的这些配体进行了QSAR研究。这些配体的几何形状和电荷分布已使用从头开始的方法进行了优化(J. Med。Chem。,1992,35,4001-4010)。柔性3-烷氧基化β-咔啉的活性构象已通过CoMFA方法进行了研究。通过CoMFA进行的QSAR研究支持了先前的假设,即具有不同内在活性的β-咔啉结合到BzR的药效基团/受体位点时可能遵循替代的比对规则。通过这种建模策略检查β-咔啉的结合亲和力已确定了一些差异,尤其是在alpha 1 beta 3 gamma 2,alpha 2 beta 3 gamma 2,alpha 3 beta 3 gamma 2中的亲脂性口袋之间的拓扑差异,alpha 5 beta 3 gamma 2和alpha 6 beta 3 gamma 2亚型,以及这五个不同的GABAA / Bz受体亚型的药效基团/受体模型之间的某些相似性。

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