Reith M E, de Costa B, Rice K C, Jacobson A E
Department of Basic Sciences, University of Illinois College of Medicine, Peoria 61605.
Eur J Pharmacol. 1992 Dec 1;227(4):417-25. doi: 10.1016/0922-4106(92)90160-w.
The present study addressed the possibility that there are distinct but allosterically interacting populations of binding sites for dopamine/cocaine and BTCP/GBR (N-[1-(2-benzo[b]thiophenyl)cyclohexyl]piperidine/1-(2-diphenylmethox y) - ethyl]-4-(3-phenylpropyl)piperazine) (selective dopamine uptake blockers) on the dopamine transporter in the rat striatum. Dopamine uptake sites were labeled in vitro with the cocaine analog [3H]CFT (2 beta-carbomethoxy-3 beta-(4-fluorophenyl)-tropane), and the inhibition of binding by CFT or cocaine was measured. A graphic method was adopted for studying shifts in inhibitory potency resulting from the addition of a second compound. Under the conditions used, the co-presence of dopamine, GBR 12935, or BTCP decreased the inhibitory potency of CFT or cocaine to the extent predicted by a model in which all compounds bind to the same site or the binding of all compounds is mutually exclusive. No evidence for negative allosteric interactions between CFT and BTCP was found in experiments comparing inhibition of [3H]CFT binding by BTCP at a low and high concentration of [3H]CFT.
本研究探讨了在大鼠纹状体多巴胺转运体上,是否存在不同但能发生变构相互作用的多巴胺/可卡因结合位点群体以及BTCP/GBR(N-[1-(2-苯并[b]噻吩基)环己基]哌啶/1-(2-二苯基甲氧基) - 乙基]-4-(3-苯基丙基)哌嗪)(选择性多巴胺摄取阻滞剂)结合位点群体的可能性。多巴胺摄取位点在体外用可卡因类似物[3H]CFT(2β-甲氧羰基-3β-(4-氟苯基)-托烷)进行标记,并测量CFT或可卡因对结合的抑制作用。采用一种图解方法来研究添加第二种化合物导致的抑制效力变化。在所使用的条件下,多巴胺、GBR 12935或BTCP的共同存在降低了CFT或可卡因的抑制效力,其降低程度与所有化合物都结合到同一位点或所有化合物的结合相互排斥的模型所预测的程度一致。在比较低浓度和高浓度[3H]CFT下BTCP对[3H]CFT结合的抑制作用的实验中,未发现CFT与BTCP之间存在负性变构相互作用的证据。