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使用H3拮抗剂[125I]碘苯丙胺对小鼠脑中组胺H3受体进行表征。

Characterization of histamine H3 receptors in mouse brain using the H3 antagonist [125I]iodophenpropit.

作者信息

Jansen F P, Mochizuki T, Maeyama K, Leurs R, Timmerman H

机构信息

Leiden/Amsterdam Center for Drug Research, Department of Pharmacochemistry, Faculty of Chemistry, Vrije Universiteit, The Netherlands.

出版信息

Naunyn Schmiedebergs Arch Pharmacol. 2000 Jul;362(1):60-7. doi: 10.1007/s002100000227.

Abstract

We have characterized the binding of the histamine H3 receptor antagonist [125I]iodophenpropit to mouse brain. [125I]Iodophenpropit saturably bound to mouse brain membranes with a pKd-value of 9.31+/-0.04 nM and a receptor binding density of 290+/-8 fmol per mg protein. Saturation binding analysis revealed binding of [125I]iodophenpropit to a single class of sites, showing linear Scatchard plots and Hill coefficients not different from unity (nH=0.98+/-0.02). At a concentration of 0.25 nM [125I]iodophenpropit, specific binding represented about 75% of the total binding. Competition binding curves for H3 receptor antagonists were fitted best to a one-site model, showing pKi-values in general accordance with the pA2-values obtained in mouse cerebral cortex. Displacement of [125I]iodophenpropit by the H3 receptor agonists (R)-alpha-methylhistamine, immepip, imetit and histamine were fitted best to a two-site model. Competition binding curves of (R)-alpha-methylhistamine showed a rightward shift upon incubation with GTPgammaS (10 microM), indicating the involvement of G-proteins in H3 agonist binding. In contrast, competition binding curves of the antagonists iodophenpropit, thioperamide and burimamide were not affected by GTPgammaS (10 microM). Autoradiographic experiments showed that [125I]iodophenpropit binding sites were heterogeneously distributed, similarly to the distribution of histamine H3 receptors reported in rat brain. Highest densities were observed in the cerebral cortex, the striatum, the nucleus accumbens, the globus pallidus and the substantia nigra. In conclusion, we have demonstrated that in mouse brain, [125I]iodophenpropit selectively binds to histamine H3 receptors. We also observed that the mouse brain H3 receptors labelled by [125I]iodophenpropit displayed binding characteristics and a distribution similar to rat brain.

摘要

我们已对组胺H3受体拮抗剂[125I]碘苯丙哌进行了小鼠脑内结合特性的研究。[125I]碘苯丙哌可饱和结合至小鼠脑膜,其解离常数(pKd)值为9.31±0.04 nM,受体结合密度为每毫克蛋白290±8 fmol。饱和结合分析显示,[125I]碘苯丙哌与单一类别的位点结合,Scatchard图呈线性,希尔系数与1无差异(nH = 0.98±0.02)。在0.25 nM的[125I]碘苯丙哌浓度下,特异性结合约占总结合的75%。H3受体拮抗剂的竞争结合曲线最适合单一位点模型,其pKi值总体上与在小鼠大脑皮层获得的pA2值一致。H3受体激动剂(R)-α-甲基组胺、依美哌啶、碘替丁和组胺对[125I]碘苯丙哌的置换最适合双位点模型。(R)-α-甲基组胺的竞争结合曲线在与GTPγS(10 μM)孵育后出现右移,表明G蛋白参与了H3激动剂的结合。相比之下,拮抗剂碘苯丙哌、硫丙酰胺和布立马胺的竞争结合曲线不受GTPγS(10 μM)影响。放射自显影实验表明,[125I]碘苯丙哌结合位点分布不均一,与大鼠脑中报道的组胺H3受体分布相似。在大脑皮层、纹状体、伏隔核、苍白球和黑质中观察到最高密度。总之,我们已证明在小鼠脑中,[125I]碘苯丙哌选择性结合组胺H3受体。我们还观察到,由[125I]碘苯丙哌标记的小鼠脑H3受体表现出与大鼠脑相似的结合特性和分布。

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