[ROLE PHOSPHOINOSITID SIGNALING PATHWAY IN OPIOIDS CONTROL OF P2X3 RECEPTORS IN THE PRIMARY SENSORY NEURONS].

V. Kulyk, I. Chizhmakov, T. M. Volkova, O. Maximyuk, O. Krishtal
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引用次数: 4

Abstract

Homomeric P2X3 receptors expressed in primary nociceptive neurons are crucial elements in the pain signal generation. In turn, opioid system regulates the intensity of this signal in both CNS and PNS. Here we describe the effects of opioids on P2X3 receptors in DRG neurons studied by using patch clamp technique. Activation of G-protein coupled opioid receptors by endogenous opioid Leu-enkephalin (Leu), resulted in the two opposite effects on P2X3 receptor-mediated currents (P2X3 currents). In particular, application of 1 µM Leu lead to the complete inhibition of P2X3 currents. However, after pretreatment of the neurons with a Gi/o-protein inhibitor pertussis toxin (PT), the same concentration of Leu caused facilitation of P2X3 currents. PLC inhibitor U-73122 at concentration of 1 µM completely eliminated both facilitating and inhibitory effects of Leu on P2X3 currents. Thus, opioid receptor agonists cause two oppositely directed effects on P2X3 receptors in DRG neurons of rats and both of them are mediated through PLC signaling pathway. Our results point to a possible molecular basis of the mechanism for the well-known transition inhibitory action of opioids (analgesia) to facilitating (hyperalgesia).
[磷脂苷信号通路在阿片样物质控制初级感觉神经元p2x3受体中的作用]。
同源P2X3受体在初级痛觉神经元中表达是疼痛信号产生的关键因素。反过来,阿片系统调节该信号在CNS和PNS中的强度。本文采用膜片钳技术研究了阿片样物质对DRG神经元P2X3受体的影响。内源性阿片样物质Leu-enkephalin (Leu)激活g蛋白偶联阿片受体,对P2X3受体介导的电流(P2X3电流)产生两种相反的影响。特别是,应用1µM Leu可完全抑制P2X3电流。然而,用Gi/o蛋白抑制剂百日毒(pertussis toxin, PT)预处理神经元后,相同浓度的Leu可促进P2X3电流。PLC抑制剂U-73122在浓度为1µM时完全消除了Leu对P2X3电流的促进和抑制作用。因此,阿片受体激动剂对大鼠DRG神经元的P2X3受体产生两种相反的作用,这两种作用均通过PLC信号通路介导。我们的结果指出了阿片类药物众所周知的过渡抑制作用(镇痛)到促进(痛觉过敏)机制的可能分子基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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