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多巴胺的刚性类似物:6-外向型和6-内向型-(3',4'-二羟基苯基)-2-氮杂双环[2.2.2]辛烷与多巴胺摄取位点及受体的合成与相互作用

Rigid analogues of dopamine: synthesis and interaction of 6-exo- and 6-endo-(3',4'-dihydroxyphenyl)-2-azabicyclo[2.2.2]octanes with dopamine uptake sites and receptors.

作者信息

Law S J, Morgan J M, Masten L W, Borne R F, Arana G W, Kula N S, Baldessarini R J

出版信息

J Med Chem. 1982 Mar;25(3):213-6. doi: 10.1021/jm00345a004.

Abstract

Two isomeric 6-endo- and 6-exo-(3',4'-dihydroxyphenyl) derivatives (1 and 2) of 2-azabicyclo[2.2.2]octane were synthesized as semirigid analogues of dopamine (DA) to help evaluate the preferred conformation of dopamine at the uptake site of the presynaptic nerve terminal and at the DA receptor. Against the uptake of 0.1 microM [3H]DA by a synaptosomal preparation of corpus striatum from the reserpine-pretreated rat, 2 was found to have a weak inhibitory effect that was three times greater than that of 1 (IC50 = 32 vs. 110 microM). Interactions with DA receptors were assessed with competition for binding of [3H]apomorphine (APO) and on the effect on DA-sensitive adenylate cyclase. Compounds 1 and 2 were both virtually inactive against the binding of 0.5 nM [3H]APO at a screening concentration of 100 microM. The experimental compounds also exhibited only slight adenylate cyclase stimulation in rat striatal homogenates, with 1 appearing to be somewhat more active (at 50 or 400 microM). The weak activities of 1 and 2 and their relatively small differences in activity in these test systems suggest that the DA analogues interact only weakly with the DA transport and receptor sites, possibly as a result of the steric interference caused by the bulky bicyclic ring.

摘要

合成了2-氮杂双环[2.2.2]辛烷的两种异构的6-内型和6-外型-(3',4'-二羟基苯基)衍生物(1和2),作为多巴胺(DA)的半刚性类似物,以帮助评估多巴胺在突触前神经末梢摄取位点和DA受体处的优选构象。在利血平预处理大鼠的纹状体突触体标本对0.1微摩尔[3H]DA的摄取实验中,发现2具有微弱的抑制作用,其抑制作用是1的三倍(IC50 = 32微摩尔对110微摩尔)。通过[3H]阿扑吗啡(APO)结合竞争和对DA敏感腺苷酸环化酶的作用来评估与DA受体的相互作用。在100微摩尔的筛选浓度下,化合物1和2对0.5纳摩尔[3H]APO的结合几乎均无活性。实验化合物在大鼠纹状体匀浆中也仅表现出轻微的腺苷酸环化酶刺激作用,1似乎活性稍高一些(在50或400微摩尔时)。1和2的微弱活性以及它们在这些测试系统中的活性相对较小的差异表明,DA类似物与DA转运和受体位点的相互作用较弱,这可能是由于庞大的双环引起的空间位阻所致。

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