Daly J W, Padgett W L, Secunda S I, Thompson R D, Olsson R A
Laboratory of Bioorganic Chemistry, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, Md 20892.
Pharmacology. 1993;46(2):91-100. doi: 10.1159/000139033.
A series of 55 2-alkyloxy-, 2-aryloxy- and 2-aralkyloxy-adenosines was screened as inhibitors of the binding of [3H]R-phenyl-isopropyladenosine to A1 adenosine receptors in rat cerebral cortical membranes, and of the binding of [3]N-ethylcarboxamidoadenosine to A2 adenosine receptors in rat striatal membranes and as agonists at A2 adenosine receptors coupled to adenylate cyclase in rat pheochromocytoma PC12 cell membranes. The activities are consonant with a hydrophobic binding site in the A2 receptors at a distance from the 2-position of the adenine ring corresponding to a spacer chain of -O-CH2-CH2-. These is little lateral steric tolerance in the region occupied by the spacer chain. Interaction with the hydrophobic binding site is greatest in the 2-alkyloxy series for 2-cyclohexylethoxy-, 2-cyclohexylpropoxy- and 2-cyclohexylbutoxyadenosines and in the 2-aralkoxy series for 2-phenylethoxy-, 2-(4-methylphenyl)ethoxy-, 2-(4-chlorophenyl)ethoxy-, and 2-naphthylethoxy-adenosine. The affinities of the 2-substituted adenosines for the rat cerebral cortical A1 receptors are not as markedly altered by structural changes and are in almost all cases two- to hundredfold less than the affinity of the 2-substituted adenosine for the rat striatal A2 receptor. There is excellent correspondence of the present data on rat A2 receptors with reported potencies of these 2-substituted adenosines as coronary vasodilators in guinea pig heart preparations.
对一系列55种2 - 烷氧基、2 - 芳氧基和2 - 芳烷氧基腺苷进行了筛选,以检测它们对大鼠大脑皮质膜中[³H]R - 苯基 - 异丙基腺苷与A1腺苷受体结合的抑制作用,以及对大鼠纹状体膜中[³]N - 乙基羧酰胺腺苷与A2腺苷受体结合的抑制作用,并检测它们作为激动剂对大鼠嗜铬细胞瘤PC12细胞膜中与腺苷酸环化酶偶联的A2腺苷受体的作用。这些活性与A2受体中的一个疏水结合位点一致,该位点距腺嘌呤环的2位有一段距离,相当于一个 -O-CH₂-CH₂- 的间隔链。在间隔链占据的区域几乎没有侧向空间耐受性。在2 - 烷氧基系列中,2 - 环己基乙氧基、2 - 环己基丙氧基和2 - 环己基丁氧基腺苷与疏水结合位点的相互作用最强;在2 - 芳烷氧基系列中,2 - 苯氧基、2 - (4 - 甲基苯基)乙氧基、2 - (4 - 氯苯基)乙氧基和2 - 萘基乙氧基腺苷与疏水结合位点的相互作用最强。2 - 取代腺苷对大鼠大脑皮质A1受体的亲和力不会因结构变化而显著改变,并且在几乎所有情况下都比2 - 取代腺苷对大鼠纹状体A2受体的亲和力低两到百倍。本研究关于大鼠A2受体的数据与报道的这些2 - 取代腺苷在豚鼠心脏制剂中作为冠状动脉扩张剂的效力有很好的对应关系。