Ikeda Kazutaka, Kobayashi Toru, Kumanishi Toshiro, Yano Ryoji, Sora Ichiro, Niki Hiroaki
Department of Molecular Psychiatry, Tokyo Institute of Psychiatry, 2-1-8 Kamikitazawa, Setagaya-ku, Tokyo 156-8585, Japan.
Neurosci Res. 2002 Oct;44(2):121-131. doi: 10.1016/s0168-0102(02)00094-9.
Opioids and ethanol have been used since ancient times for pain relief. Opioid signaling is mediated by various effectors, including G protein-activated inwardly rectifying potassium (GIRK) channels, adenylyl cyclases, voltage-dependent calcium channels, phospholipase Cbeta(PLCbeta), and mitogen-activated protein kinases, although it has been unclear which effector mediates the analgesic effects of opioids. Ethanol induces a variety of physiological phenomena via various proteins, including GIRK channels rather than via membrane lipids. GIRK channel activation by either G proteins or ethanol is impaired in weaver mutant mice. The mutant mice may therefore serve as a useful animal model for studying the role of GIRK channels in vivo. Reduced analgesia by using either opioids or ethanol in weaver mutant mice suggests that GIRK channels are important effectors in both opioid- and ethanol-induced analgesia. This hypothesis is supported by similar findings in GIRK2 knockout mice. Among the various effectors coupled with opioid receptors and various targets of ethanol, GIRK channels are the only molecules whose involvement in opioid- and ethanol-induced analgesia has been demonstrated in vivo. The GIRK channel is potentially one of the key molecules in furthering the understanding of the pain control system and in developing advanced analgesics with fewer adverse effects.
自古以来,阿片类药物和乙醇就被用于缓解疼痛。阿片类药物的信号传导由多种效应器介导,包括G蛋白激活的内向整流钾通道(GIRK通道)、腺苷酸环化酶、电压依赖性钙通道、磷脂酶Cβ(PLCβ)和丝裂原活化蛋白激酶,尽管尚不清楚哪种效应器介导阿片类药物的镇痛作用。乙醇通过多种蛋白质诱导各种生理现象,包括GIRK通道,而不是通过膜脂。在weaver突变小鼠中,G蛋白或乙醇对GIRK通道的激活受损。因此,突变小鼠可作为研究GIRK通道在体内作用的有用动物模型。在weaver突变小鼠中,使用阿片类药物或乙醇导致镇痛作用减弱,这表明GIRK通道是阿片类药物和乙醇诱导镇痛的重要效应器。这一假设得到了GIRK2基因敲除小鼠类似研究结果的支持。在与阿片受体偶联的各种效应器和乙醇的各种靶点中,GIRK通道是唯一在体内已被证明参与阿片类药物和乙醇诱导镇痛的分子。GIRK通道可能是进一步理解疼痛控制系统和开发不良反应较少的先进镇痛药的关键分子之一。