首页> 外文期刊>Pharmacology and Toxicology: An International Journal >Pharmacological properties of cannabinoid receptors in the avian brain: similarity of rat and chicken cannabinoid1 receptor recognition sites and expression of cannabinoid2 receptor-like immunoreactivity in the embryonic chick brain.
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Pharmacological properties of cannabinoid receptors in the avian brain: similarity of rat and chicken cannabinoid1 receptor recognition sites and expression of cannabinoid2 receptor-like immunoreactivity in the embryonic chick brain.

机译:禽脑中大麻素受体的药理特性:大鼠和鸡的大麻素1受体识别位点的相似性以及胚胎鸡脑中大麻素2受体样免疫反应性的表达。

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摘要

The pharmacological properties of brain cannabinoid receptors were investigated in brains of 35 day-old chickens, since little is known about the avian cannabinoid system. The cannabinoid1 receptor-selective antagonist ligand [3H]SR 141716A bound to chicken brain membranes with K(D) and Bmax values of 0.92+/-0.28 nM and 790+/-58 fmol/mg protein, respectively. The binding was inhibited by CP 55,940 with a pI50 value of 7.63+/-0.14 and by a series of compounds with the order of potency CP 55,940>R(+)WIN 55,212-2>R-1 methanandamide approximately DAK. S(-)WIN 55,212-3 and AM404 were without inhibitory effect at 1 microM. Similar results were found for rat brain membranes. For both rat and chicken brain membranes, addition of the non-hydrolysable GTP analogues Gpp[NH]p and GTPgammaS shifted the CP 55,940 inhibition curve to the right, consistent with an intact coupling to G-proteins in the preparations. Fatty acid amidohydrolase in chicken brain membranes was less sensitive to inhibition by phenylmethylsulphonyl fluoride and arachidonoyl serotonin than its rodent equivalent. However, when fatty acid amidohydrolase activity in the preparations was reduced by use of a lower assay membrane concentration, anandamide was found to inhibit the binding of [3H]SR 141716A to chicken membranes with a pI50 value of 6.39+/-0.16. Using a novel antibody raised to amino acids 346-359 from the C-terminal tail of the human cannabinoid2 receptor, it was found that embryonic chick brain tissue (and embryonic chick neurones in primary culture) expressed a approximately 53 kDa immunoreactive band. This immunoreactivity, which was prevented by preincubation of the antibody with the immunising peptide, was also seen in cells expressing the recombinant human cannabinoid, receptor, but was not seen in adult chicken brain homogenates or in rat cerebellar homogenates. However, a "classical" cannabinoid2-receptor component of [3H]WIN 55212-2 binding (i.e. a fraction inhibited by low concentrations of the cannabinoid2-receptor-selective antagonist SR 144528) was not found.
机译:由于对禽类大麻素系统知之甚少,因此在35日龄鸡的大脑中研究了其脑大麻素受体的药理特性。 cannabinoid11受体选择性拮抗剂配体[3H] SR 141716A结合到鸡脑膜上,其K(D)和Bmax值分别为0.92 +/- 0.28 nM和790 +/- 58 fmol / mg蛋白。 CP 55,940的pI50值为7.63 +/- 0.14抑制了结合,而一系列效力依次为CP 55,940> R(+)WIN 55,212-2> R-1甲氨酰胺的化合物抑制了DAK。 S(-)WIN 55,212-3和AM404在1 microM时无抑制作用。对于大鼠脑膜也发现了相似的结果。对于大鼠和鸡的脑膜,添加不可水解的GTP类似物Gpp [NH] p和GTPgammaS,会使CP 55,940抑制曲线向右移动,这与制剂中与G蛋白的完整偶联一致。鸡脑膜中的脂肪酸酰胺水解酶比同等啮齿动物对苯甲基磺酰氟和花生四烯酸血清素的抑制作用更不敏感。然而,当通过使用较低的测定膜浓度降低制剂中的脂肪酸酰胺水解酶活性时,发现anandamide抑制[3H] SR 141716A与鸡膜的结合,pI50值为6.39 +/- 0.16。使用一种从人大麻素2受体C末端尾部产生的氨基酸346-359的新型抗体,发现胚胎鸡的脑组织(和原代培养的胚胎鸡的神经元)表达了大约53 kDa的免疫反应带。在表达重组人大麻素受体的细胞中也观察到了这种免疫反应性,这种免疫反应性是通过将抗体与免疫肽进行预温育来预防的,但在成年鸡脑匀浆或大鼠小脑匀浆中则未观察到。但是,未发现[3H] WIN 55212-2结合的“经典”大麻素2受体成分(即被低浓度的大麻素2受体选择性拮抗剂SR 144528抑制的部分)。

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