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5-甲氧基-苯丙胺噻吨的结构类似物:合成及其与多巴胺D2、D3和5-羟色胺5-HT1A受体的相互作用

Structural analogues of 5-OMe-BPAT: synthesis and interactions with dopamine D2, D3, and serotonin 5-HT1A receptors.

作者信息

Homan E J, Kroodsma E, Copinga S, Unelius L, Mohell N, Wikström H V, Grol C J

机构信息

Department of Medicinal Chemistry, University Centre for Pharmacy, University of Groningen, The Netherlands.

出版信息

Bioorg Med Chem. 1999 Jun;7(6):1111-21. doi: 10.1016/s0968-0896(99)00039-5.

Abstract

Several structural analogues of 5-methoxy-2-[N-(2-benzamidoethyl)-N-n-propylamino]tetralin (5-OMe-BPAT, 1), a representative of a series of 2-aminotetralin-derived benzamides with potential atypical antipsychotic properties, were synthesized and evaluated for their ability to bind to dopamine D2A, D3, and serotonin 5-HT1A receptors in vitro. The structure affinity relationships revealed that the aromatic ring of the benzamide moiety of 1 contributes to the high affinities for all three receptor subtypes. Furthermore, 1 may interact with the dopamine D2 and D3 receptors through hydrogen bond formation with its carbonyl group. Investigation of the role of the amide hydrogen atom by amide N-alkylation was not conclusive, since conformational aspects may be responsible for the decreased dopaminergic affinities of the N'-alkylated analogues of 1. The effects of the amide modifications on the serotonin 5-HT1A receptor affinity were less pronounced, suggesting that the benzamidoethyl side-chain of 1 as a whole enhances the affinity for this receptor subtype probably through hydrophobic interactions with an accessory binding site. The structural requirements for the substituents at the basic nitrogen atom supported the hypothesis that the 2-aminotetralin moieties of the 2-aminotetralin-derived substituted benzamides may share the same binding sites as the 2-(N,N-di-n-propylamino)tetralins.

摘要

5-甲氧基-2-[N-(2-苯甲酰胺基乙基)-N-正丙基氨基]四氢萘(5-OMe-BPAT,1)是一系列具有潜在非典型抗精神病特性的2-氨基四氢萘衍生苯甲酰胺的代表物,合成了其几种结构类似物,并对它们在体外与多巴胺D2A、D3和5-羟色胺5-HT1A受体结合的能力进行了评估。结构-亲和力关系表明,1的苯甲酰胺部分的芳香环对所有三种受体亚型都具有高亲和力。此外,1可能通过其羰基形成氢键与多巴胺D2和D3受体相互作用。通过酰胺N-烷基化对酰胺氢原子作用的研究尚无定论,因为构象方面可能是1的N'-烷基化类似物多巴胺能亲和力降低的原因。酰胺修饰对5-羟色胺5-HT1A受体亲和力的影响不太明显,这表明1的苯甲酰胺基乙基侧链整体上可能通过与一个辅助结合位点的疏水相互作用增强了对该受体亚型的亲和力。碱性氮原子上取代基的结构要求支持了这样的假设,即2-氨基四氢萘衍生的取代苯甲酰胺的2-氨基四氢萘部分可能与2-(N,N-二正丙基氨基)四氢萘共享相同的结合位点。

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