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大鼠神经元细胞培养物中CB1受体的特性:使用选择性受体拮抗剂SR 141716A进行结合和功能研究。

Characterization of CB1 receptors on rat neuronal cell cultures: binding and functional studies using the selective receptor antagonist SR 141716A.

作者信息

Jung M, Calassi R, Rinaldi-Carmona M, Chardenot P, Le Fur G, Soubrié P, Oury-Donat F

机构信息

Sanofi Recherche, Montepellier, France.

出版信息

J Neurochem. 1997 Jan;68(1):402-9. doi: 10.1046/j.1471-4159.1997.68010402.x.

DOI:10.1046/j.1471-4159.1997.68010402.x
PMID:8978752
Abstract

This study was undertaken to characterize further the central cannabinoid receptors in rat primary neuronal cell cultures from selected brain structures. By using [3H]SR 141716A, the specific CB1 receptor antagonist, we demonstrate in cortical neurons the presence of a high density of specific binding sites (Bmax = 139 +/- 9 fmol/mg of protein) displaying a high affinity (KD = 0.76 +/- 0.09 nM). The two cannabinoid receptor agonists, CP 55940 and WIN 55212-2, inhibited in a concentration-dependent manner cyclic AMP production induced by either 1 microM forskolin or isoproterenol with EC50 values in the nanomolar range (4.6 and 65 nM with forskolin and 1.0 and 5.1 nM with isoproterenol for CP 55940 and WIN 55212-2, respectively). Moreover, in striatal neurons and cerebellar granule cells, CP 55940 was also able to reduce the cyclic AMP accumulation induced by 1 microM forskolin with a potency similar to that observed in cortical neurons (EC50 values of 3.5 and 1.9 nM in striatum and cerebellum, respectively). SR 141716A antagonized the CP 55940- and WIN 55212-2-induced inhibition of cyclic AMP accumulation, suggesting CB1 receptor-specific mediation of these effects on all primary cultures tested. Furthermore, CP 55940 was unable to induce mitogen-activated protein kinase activation in either cortical or striatal neurons. In conclusion, our results show nanomolar efficiencies for CP 55940 and WIN 55212-2 on adenylyl cyclase activity and no effect on any other signal transduction pathway investigated in primary neuronal cultures.

摘要

本研究旨在进一步表征来自特定脑结构的大鼠原代神经元细胞培养物中的中枢大麻素受体。通过使用特异性CB1受体拮抗剂[3H]SR 141716A,我们在皮质神经元中证明存在高密度的特异性结合位点(Bmax = 139 +/- 9 fmol/mg蛋白质),显示出高亲和力(KD = 0.76 +/- 0.09 nM)。两种大麻素受体激动剂CP 55940和WIN 55212-2以浓度依赖性方式抑制由1 microM福斯可林或异丙肾上腺素诱导的环磷酸腺苷(cAMP)产生,EC50值在纳摩尔范围内(CP 55940和WIN 55212-2与福斯可林的EC50值分别为4.6和65 nM,与异丙肾上腺素的EC50值分别为1.0和5.1 nM)。此外,在纹状体神经元和小脑颗粒细胞中,CP 55940也能够降低由1 microM福斯可林诱导的cAMP积累,其效力与在皮质神经元中观察到的相似(纹状体和小脑中的EC50值分别为3.5和1.9 nM)。SR 141716A拮抗CP 55940和WIN 55212-2诱导的cAMP积累抑制,表明这些效应在所有测试的原代培养物中由CB1受体特异性介导。此外,CP 55940在皮质或纹状体神经元中均无法诱导丝裂原活化蛋白激酶激活。总之,我们的结果表明CP 55940和WIN 55212-2对腺苷酸环化酶活性具有纳摩尔效力,并且对原代神经元培养物中研究的任何其他信号转导途径均无影响。

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