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RGS9-2 调节脊髓背角的痛觉行为和阿片类药物介导的突触传递。

RGS9-2 modulates nociceptive behaviour and opioid-mediated synaptic transmission in the spinal dorsal horn.

机构信息

Department of Basic Science, University of Crete, Faculty of Medicine, Heraklion, Crete 71003, Greece.

出版信息

Neurosci Lett. 2011 Aug 21;501(1):31-4. doi: 10.1016/j.neulet.2011.06.033. Epub 2011 Jun 29.

Abstract

The regulator of G protein signaling 9-2 (RGS9-2) is a constituent of G protein-coupled receptor (GPCR) macromolecular complexes with a major role in regulation of GPCR activity in the central nervous system. Previous in situ hybridization and Western blot studies revealed that RGS9-2 is expressed in the superficial dorsal horn of the spinal cord. In the present study, we monitored tail withdrawal latencies to noxious thermal stimuli and performed in vitro whole-cell patch clamp electrophysiological recordings from neurons in lamina II of the spinal dorsal horn to examine the role of RGS9-2 in the dorsal horn of the spinal cord in nociceptive behaviours and opiate mediated modulation of synaptic transmission. Our findings obtained from RGS9 knockout mice indicate that the lack of RGS9-2 protein decreases sensitivity to thermal stimuli and to the analgesic actions of morphine in the tail immersion paradigm. This modulatory role of RGS9-2 on opiate-mediated responses was further supported by electrophysiological studies showing that hyperpolarization of neurons in lamina II of the spinal dorsal horn evoked by application of DAMGO ([d-Ala2, N-MePhe4, Gly-ol]-enkephalin, a mu opioid receptor agonist) was diminished in RGS9 knockout mice. The results indicate that RGS9-2 enhances the effect of morphine and may play a crucial role in opiate-mediated analgesic mechanisms at the level of the spinal cord.

摘要

G 蛋白信号转导调节因子 9-2(RGS9-2)是 G 蛋白偶联受体(GPCR)大分子复合物的组成部分,在中枢神经系统中 GPCR 活性的调节中起主要作用。先前的原位杂交和 Western blot 研究表明,RGS9-2 在脊髓背角浅层表达。在本研究中,我们监测了对有害热刺激的尾巴撤回潜伏期,并从脊髓背角 II 层的神经元进行了体外全细胞膜片钳电生理记录,以研究 RGS9-2 在脊髓背角中对伤害性行为和阿片介导的突触传递调制的作用。我们从 RGS9 敲除小鼠中获得的发现表明,缺乏 RGS9-2 蛋白会降低对热刺激的敏感性以及在尾巴浸入范式中吗啡的镇痛作用。RGS9-2 对阿片介导反应的这种调节作用进一步得到了电生理研究的支持,该研究表明,应用 DAMGO([d-Ala2,N-MePhe4,Gly-ol]-脑啡肽,μ 阿片受体激动剂)时脊髓背角 II 层神经元的超极化在 RGS9 敲除小鼠中减弱。结果表明,RGS9-2 增强了吗啡的作用,并且可能在脊髓水平的阿片介导的镇痛机制中起关键作用。

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