Kovalainen J T, Christiaans J A, Kotisaari S, Laitinen J T, Männistö P T, Tuomisto L, Gynther J
University of Kuopio, P.O. Box 1627, FIN-70211 Kuopio, Finland.
J Med Chem. 1999 Apr 8;42(7):1193-202. doi: 10.1021/jm980408v.
To investigate stereospecificity and the mechanism of activation of the histamine H3-receptor, a series of 2-(R and S)-amino-3-(1H-imidazol-4(5)-yl)propyl ether derivatives were synthesized. In these compounds, the structures of the well-known antagonist iodoproxyfan and the full agonists R- or S-(alpha)-methylhistamine were combined in one molecule. The obtained "hybrid" molecules were tested for H3-receptor affinity on rat cerebral cortex. Some selected compounds were further screened for H3-receptor functional activity with GTPgamma[35S] autoradiography studies using rat brain tissue sections. The affinity of all the synthesized compounds (-log Ki = 5.9-7.9) was lower than that found for iodoproxyfan or two of its analogues; however, the compounds showed stereospecificity. The S-configuration of the series of 2-amino-3-(1H-imidazol-4(5)-yl)propyl ether derivatives, which resembles the stereochemistry of R-(alpha)-methylhistamine, was more favorable. Incorporation of an amino group in the propyl chain of iodoproxyfan and analogues did not alter the antagonistic behavior for compounds with an aromatic side chain. However, when also the aromatic moiety was replaced by a cyclohexyl group, the compounds behaved as agonists. This indicates that an interaction between the side chain amino group and the H3-receptor protein is involved in H3-receptor activation. The 2-(S)-amino-3-(1H-imidazol-4(5)-yl)propyl cyclohexylmethyl ether (23) has H3-receptor agonistic properties with high affinity for the histamine H3-receptor (-log Ki = 7.9 +/- 0.2) and might serve as a useful tool for further studies concerning drug design and receptor-ligand interactions.
为了研究组胺H3受体的立体特异性和激活机制,合成了一系列2-(R和S)-氨基-3-(1H-咪唑-4(5)-基)丙基醚衍生物。在这些化合物中,著名的拮抗剂碘普罗番和完全激动剂R-或S-(α)-甲基组胺的结构被组合在一个分子中。对所得到的“杂交”分子进行大鼠大脑皮层H3受体亲和力测试。使用大鼠脑组织切片,通过GTPγ[35S]放射自显影研究对一些选定的化合物进一步筛选H3受体功能活性。所有合成化合物的亲和力(-log Ki = 5.9 - 7.9)低于碘普罗番或其两种类似物;然而,这些化合物表现出立体特异性。2-氨基-3-(1H-咪唑-4(5)-基)丙基醚衍生物系列的S-构型类似于R-(α)-甲基组胺的立体化学,更有利。在碘普罗番及其类似物的丙基链中引入氨基不会改变具有芳香侧链的化合物的拮抗行为。然而,当芳香部分也被环己基取代时,这些化合物表现为激动剂。这表明侧链氨基与H3受体蛋白之间的相互作用参与了H3受体激活。2-(S)-氨基-3-(1H-咪唑-4(5)-基)丙基环己基甲基醚(23)具有H3受体激动特性,对组胺H3受体具有高亲和力(-log Ki = 7.9 ± 0.2),可能作为进一步研究药物设计和受体-配体相互作用的有用工具。