Goetz A S, Lutz M W, Rimele T J, Saussy D L
Department of Cellular Biochemistry, Glaxo Research Institute, Research Triangle Park, North Carolina.
J Pharmacol Exp Ther. 1994 Dec;271(3):1228-33.
Experiments were designed to characterize the predominant subtype of alpha-1 adrenoceptors in human and canine prostate tissue. The chemical (+/-)-beta-([125I]iodo-4-hydroxyphenyl)-ethyl- aminomethyl-tetralone bound in a specific, saturable manner to a single class of binding sites in membranes that expressed recombinant hamster alpha-1B, bovine alpha-1C and rat alpha-1D receptors expressed in rat-1 fibroblasts and to those from prostate tissue. Competition assays with human and canine prostate membranes revealed only a single class of binding sites. Binding affinity in both human and canine prostate most significantly correlated with binding affinity for the recombinant bovine alpha-1C receptor (r = .98 human, .95 canine). Further analysis with leverage plots demonstrated that binding affinity in human and canine prostate tissue is best predicted by binding affinity to recombinant bovine alpha-1C (P < .01 human and P < .001 canine). These data are consistent with a single class of alpha-1 adrenoceptors in human and canine prostate tissue, which is best represented as the alpha-1C subtype.
实验旨在表征人类和犬类前列腺组织中主要的α-1肾上腺素能受体亚型。化学物质(±)-β-([125I]碘-4-羟基苯基)-乙基-氨基甲基四氢萘酮以特异性、可饱和的方式与表达重组仓鼠α-1B、牛α-1C和大鼠α-1D受体的大鼠-1成纤维细胞膜中的单一类结合位点以及前列腺组织中的结合位点结合。用人和犬前列腺膜进行的竞争试验仅显示出单一类结合位点。人和犬前列腺中的结合亲和力与重组牛α-1C受体的结合亲和力最显著相关(人类r = 0.98,犬类r = 0.95)。利用杠杆图进行的进一步分析表明,人和犬前列腺组织中的结合亲和力最好通过与重组牛α-1C的结合亲和力来预测(人类P < 0.01,犬类P < 0.001)。这些数据与人及犬前列腺组织中单一类α-1肾上腺素能受体一致,其最佳代表为α-1C亚型。