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选择性多巴胺能3-苯并氮杂卓类5,6-亚乙基桥连衍生物的合成、构象及多巴胺能活性

Synthesis, conformation, and dopaminergic activity of 5,6-ethano-bridged derivatives of selective dopaminergic 3-benzazepines.

作者信息

Weinstock J, Oh H J, DeBrosse C W, Eggleston D S, Wise M, Flaim K E, Gessner G W, Sawyer J L, Kaiser C

出版信息

J Med Chem. 1987 Aug;30(8):1303-8. doi: 10.1021/jm00391a007.

Abstract

To probe the suggestion that D-1 (DA1) dopamine receptors might possess an accessory pi-binding site in a location complementary to a suitably oriented aromatic ring (i.e., in an axial orientation approximately orthogonal to the catechol nucleus) in agonists such as 2,3,4,5-tetrahydro-1-phenyl-1H-3-benzazepine-7,8-diol (1) and 3',4'-dihydroxynomifensine (2) that are selective for this subtype, cis- and trans-2,3,4,8,9,9a-hexahydro-4-phenyl-1H-indeno[1,7-cd]azepine-6,7-diol were prepared. These compounds are 5,6-ethano-bridged derivatives of the D-1 selective dopamine receptor agonist 1. Introduction of the bridge reduces the conformational mobility of the parent molecule. Comprehensive conformational analyses by molecular mechanical methods indicated that both the cis and trans isomers could attain a conformation that places the phenyl substituent in an axial orientation. X-ray analysis of the trans isomer showed an axial disposition of the phenyl ring; however, NMR studies suggest that this conformation is fixed in the trans isomer, but not in the cis. The dopamine receptor binding affinity and intrinsic activity of the cis isomer were considerably greater than those of its trans counterpart; the cis isomer also demonstrated a high degree of selectivity for the D-1 subtypes. One possible explanation of these results, suggested by the molecular modeling studies, is that both the axial orientation of the phenyl postulated to be required for binding to the receptor and a putatively requisite location of the nitrogen in approximately the plane of the catechol ring can be attained only by the cis isomer in which the tetrahydroazepine ring is in a twist conformation. Conversely, these results might simply suggest a preference of the D-1 receptors for benzazepine agonists having the phenyl group in an equatorial orientation. Still another possibility is that the D-1 receptor binding site is in a sterically hindered area accessible only to compounds that are relatively planar. However, it requires an axial 1-phenylbenzazepine for strong binding. Thus, a conformationally flexible cis isomer could more readily achieve the different conformations required to both gain access to and bind with the D-1 site.

摘要

为了探究D-1(DA1)多巴胺受体可能在与激动剂(如对该亚型具有选择性的2,3,4,5-四氢-1-苯基-1H-3-苯并氮杂卓-7,8-二醇(1)和3',4'-二羟基诺米芬辛(2))中适当取向的芳香环互补的位置(即大致与儿茶酚核正交的轴向取向)拥有一个辅助π-结合位点,制备了顺式和反式-2,3,4,8,9,9a-六氢-4-苯基-1H-茚并[1,7-cd]氮杂卓-6,7-二醇。这些化合物是D-1选择性多巴胺受体激动剂1的5,6-亚乙基桥连衍生物。桥的引入降低了母体分子的构象流动性。通过分子力学方法进行的全面构象分析表明,顺式和反式异构体都可以达到使苯基取代基处于轴向取向的构象。反式异构体的X射线分析显示苯环呈轴向排列;然而,核磁共振研究表明这种构象在反式异构体中是固定的,但在顺式异构体中不是。顺式异构体的多巴胺受体结合亲和力和内在活性明显高于其反式对应物;顺式异构体对D-1亚型也表现出高度的选择性。分子模型研究提出的这些结果的一种可能解释是,只有当四氢氮杂卓环处于扭曲构象的顺式异构体才能同时实现假定与受体结合所需的苯基轴向取向以及氮在儿茶酚环平面内的假定必需位置。相反,这些结果可能仅仅表明D-1受体偏爱苯基处于赤道取向的苯并氮杂卓激动剂。还有一种可能性是,D-1受体结合位点位于一个空间位阻区域,只有相对平面的化合物才能接近。然而,它需要轴向的1-苯基苯并氮杂卓才能实现强结合。因此,构象灵活的顺式异构体可以更容易地实现进入D-1位点并与之结合所需的不同构象。

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