Paul Noel M, Taylor Michelle, Kumar Rakesh, Deschamps Jeffrey R, Luedtke Robert R, Newman Amy Hauck
Medicinal Chemistry Section, National Institute on Drug Abuses, Intramural Research Program, National Institutes of Health, Baltimore, Maryland 21224, USA.
J Med Chem. 2008 Oct 9;51(19):6095-109. doi: 10.1021/jm800532x. Epub 2008 Sep 6.
Discovering dopamine D2-like receptor subtype-selective ligands has been a focus of significant investigation. The D2R-selective antagonist 3-[4-(4-chlorophenyl)-4-hydroxypiperidinyl]methylindole (1, L741,626; K(i)(D2R/D3R) = 11.2:163 nM) has previously provided a lead template for chemical modification. Herein, analogues have been synthesized where the piperidine was replaced by a tropane ring that reversed the selectivity seen in the parent compound, in human hD2(L)R- or hD3R-transfected HEK 293 cells (31, K(i)(D2R/D3R) = 33.4:15.5 nM). Further exploration of both N-substituted and aryl ring-substituted analogues resulted in the discovery of several high affinity D2R/D3R ligands with 3-benzofurylmethyl-substituents (e.g., 45, K(i)(D2R/D3R) = 1.7:0.34 nM) that induced high affinity not achieved in similarly N-substituted piperidine analogues and significantly (470-fold) improved D3R binding affinity compared to the parent ligand 1. X-ray crystallographic data revealed a distinctive spatial arrangement of pharmacophoric elements in the piperidinol vs tropine analogues, providing clues for the diversity in SAR at the D2 and D3 receptor subtypes.
发现多巴胺 D2 样受体亚型选择性配体一直是大量研究的重点。D2R 选择性拮抗剂 3-[4-(4-氯苯基)-4-羟基哌啶基]甲基吲哚(1,L741,626;K(i)(D2R/D3R) = 11.2:163 nM)此前为化学修饰提供了一个先导模板。在此,合成了一些类似物,其中哌啶被托烷环取代,在转染了人 hD2(L)R 或 hD3R 的 HEK 293 细胞中,这种取代逆转了母体化合物中的选择性(31,K(i)(D2R/D3R) = 33.4:15.5 nM)。对 N-取代和芳基环取代类似物的进一步探索导致发现了几种具有 3-苯并呋喃基甲基取代基的高亲和力 D2R/D3R 配体(例如,45,K(i)(D2R/D3R) = 1.7:0.34 nM),这些配体诱导出了在类似 N-取代哌啶类似物中未实现的高亲和力,并且与母体配体 1 相比,D3R 结合亲和力显著提高(470 倍)。X 射线晶体学数据揭示了哌啶醇与托品类似物中药效基团元素的独特空间排列,为 D2 和 D3 受体亚型的构效关系多样性提供了线索。