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大鼠尾状核-壳核中[3H]R(+)-7-羟基-DPAT结合的药理学

Pharmacology of [3H]R(+)-7-OH-DPAT binding in the rat caudate-putamen.

作者信息

Hillefors M, von Euler G

机构信息

Department of Neuroscience, Karolinska Institute, Stockholm, Sweden.

出版信息

Neurochem Int. 2001 Jan;38(1):31-42. doi: 10.1016/s0197-0186(00)00047-4.

Abstract

Dopamine D3 receptors may be involved in drug addiction and in disorders such as schizophrenia and Parkinson's disease. To determine the pharmacological properties of dopamine D3 receptors in the rat caudate-putamen, we have investigated R(+)-[3H]7-hydroxy-N,N-di-n-propyl-2-aminotetralin ([3H]R(+)-7-OH-DPAT) binding to membrane preparations from the rat caudate-putamen. Kinetic analyses showed that [3H]R(+)-7-OH-DPAT binding reached equilibrium in approximately 1 h and that both association and dissociation curves were composed of at least two components. Likewise, saturation curves showed at least two binding components with a combined Bmax value of about 600 fmol/mg protein, which is three times higher than what is present in the subcortical limbic area. Competition curves were performed with agonists such as R(-)-propylnorapomorphine, dopamine, PD 128907, quinpirole, and bromocriptine, and antagonists such as haloperidol, raclopride, clozapine, GR 218231x, remoxipride, and U99194A. These experiments revealed that [3H]R(+)-7-OH-DPAT binding could be resolved into three specific binding sites (R1-R3) and one nonspecific binding site, with R1-R2 probably representing D3 receptor binding and the minor R3 representing D2 receptor binding. The low affinities of (+/-)-8-OH-DPAT and 1,3-di(2-tolyl)guanidine to inhibit [3H]R(+)-7-OH-DPAT binding indicate negligible involvement of 5-HT1A or sigma binding sites, respectively. The pharmacological profile of [3H]R(+)-7-OH-DPAT (2 nM) binding in the caudate-putamen was similar to that of dopamine on [125I]iodosulpride binding in the cerebellar lobule X, which contain D3 but not D2 receptors. Mg2+ increased and GTP and Na+ decreased the binding of [3H]R(+)-7-OH-DPAT, suggesting a coupling of endogenous D3 receptors to G proteins. Taken together, these results suggest that dopamine D3 receptors display multiple agonist binding states, and that D3 receptors are present in high concentrations in the rat caudate-putamen. These results may have implications for the physiological and pathological roles of dopamine D3 receptors in the brain.

摘要

多巴胺 D3 受体可能参与药物成瘾以及诸如精神分裂症和帕金森病等疾病。为了确定大鼠尾状核 - 壳核中多巴胺 D3 受体的药理学特性,我们研究了 R(+)-[3H]7 - 羟基 - N,N - 二正丙基 - 2 - 氨基四氢萘([3H]R(+)-7 - OH - DPAT)与大鼠尾状核 - 壳核膜制剂的结合情况。动力学分析表明,[3H]R(+)-7 - OH - DPAT 结合在大约 1 小时内达到平衡,并且结合和解离曲线均由至少两个成分组成。同样,饱和曲线显示至少有两个结合成分,合并的 Bmax 值约为 600 fmol/mg 蛋白质,这比皮质下边缘区域的含量高三倍。用激动剂如 R(-)-丙基去甲阿朴吗啡、多巴胺、PD 128907、喹吡罗和溴隐亭,以及拮抗剂如氟哌啶醇、雷氯必利、氯氮平、GR 218231x、瑞莫必利和 U99194A 进行竞争曲线实验。这些实验表明,[3H]R(+)-7 - OH - DPAT 结合可分为三个特异性结合位点(R1 - R3)和一个非特异性结合位点,其中 R1 - R2 可能代表 D3 受体结合,较小的 R3 代表 D2 受体结合。(±)-8 - OH - DPAT 和 1,3 - 二(2 - 甲苯基)胍抑制 [3H]R(+)-7 - OH - DPAT 结合的低亲和力分别表明 5 - HT1A 或 σ 结合位点的参与可忽略不计。尾状核 - 壳核中 [3H]R(+)-7 - OH - DPAT(2 nM)结合的药理学特征与多巴胺对含有 D3 但不含有 D2 受体的小脑小叶 X 中 [125I]碘舒必利结合的药理学特征相似。Mg2 + 增加而 GTP 和 Na + 降低 [3H]R(+)-7 - OH - DPAT 的结合,表明内源性 D3 受体与 G 蛋白偶联。综上所述,这些结果表明多巴胺 D3 受体表现出多种激动剂结合状态,并且 D3 受体在大鼠尾状核 - 壳核中高浓度存在。这些结果可能对多巴胺 D3 受体在大脑中的生理和病理作用具有启示意义。

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