Kleibeuker Wendy, Gabay Eran, Kavelaars Annemieke, Zijlstra Jitske, Wolf Gilly, Ziv Nadav, Yirmiya Raz, Shavit Yehuda, Tal Michael, Heijnen Cobi J
University Medical Centre Utrecht, Laboratory of Psychoneuroimmunology, Lundlaan 6, 3584 EA Utrecht, The Netherlands.
Brain Behav Immun. 2008 Feb;22(2):200-8. doi: 10.1016/j.bbi.2007.07.009. Epub 2007 Sep 14.
Many neurotransmitters involved in pain perception transmit signals via G protein-coupled receptors (GPCRs). GPCR kinase 2 (GRK2) regulates agonist-induced desensitization and signaling of multiple GPCRs and interacts with downstream molecules with consequences for signaling. In general, low GRK2 levels are associated with increased responses to agonist stimulation of GPCRs. Recently, we reported that in mice with reduced GRK2 levels, inflammation-induced mechanical allodynia was increased. In addition, mice with impaired interleukin (IL)-1 beta signaling did not develop mechanical allodynia after L5 spinal nerve transection (SNT). We hypothesized that in the L5 SNT model mechanical allodynia would be associated with reduced neuronal GRK2 levels in the spinal cord dorsal horn and that IL-1 beta signaling would be required to induce both the decrease in GRK2 and mechanical allodynia. We show here that in wild type (WT) mice L5 SNT induces a bilateral decrease in neuronal GRK2 expression in the lumbar spinal cord dorsal horn, 1 and 2 weeks after L5 SNT. No changes in GRK2 were observed in the thoracic segments. Moreover, spinal cord GRK2 expression was not decreased in IL-1R(-/-) mice after L5 SNT. These data show that IL-1 beta signaling is not only required for the development of mechanical allodynia, but also to reduce neuronal GRK2 expression. These results suggest a functional relation between the L5 SNT-induced IL-1 beta-mediated decrease in GRK2 and development of mechanical allodynia.
许多参与疼痛感知的神经递质通过G蛋白偶联受体(GPCRs)传递信号。GPCR激酶2(GRK2)调节多种GPCR的激动剂诱导的脱敏和信号传导,并与下游分子相互作用,对信号传导产生影响。一般来说,低GRK2水平与对GPCR激动剂刺激的反应增加有关。最近,我们报道在GRK2水平降低的小鼠中,炎症诱导的机械性异常性疼痛增加。此外,白细胞介素(IL)-1β信号受损的小鼠在L5脊髓神经横断(SNT)后未出现机械性异常性疼痛。我们假设在L5 SNT模型中,机械性异常性疼痛与脊髓背角神经元GRK2水平降低有关,并且IL-1β信号传导是诱导GRK2降低和机械性异常性疼痛所必需的。我们在此表明,在野生型(WT)小鼠中,L5 SNT在L5 SNT后1周和2周诱导腰段脊髓背角神经元GRK2表达双侧降低。在胸段未观察到GRK2的变化。此外,L5 SNT后IL-1R(-/-)小鼠脊髓GRK2表达未降低。这些数据表明,IL-1β信号传导不仅是机械性异常性疼痛发展所必需的,也是降低神经元GRK2表达所必需的。这些结果表明,L5 SNT诱导的IL-1β介导的GRK2降低与机械性异常性疼痛的发展之间存在功能关系。