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A pervasive mechanism for analgesia: Activation of GIRK2 channels

机译:镇痛的普遍机制:激活GIRK2通道

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摘要

G protein-coupled inwardly rectifying potassium channels (GIRKs) provide a common link between numerous neurotransmitter receptors and the regulation of synaptic transmission. We asked whether GIRKs specify a single behavioral action that is produced by drugs acting on the diverse receptors coupled with GIRKs. By using GIRK2-null mutant mice, we found marked reduction or complete elimination of the antinociceptive (hot plate test) effects of ethanol, oxotremorine, nicotine, baclofen, clonidine, and the cannabinoid receptor agonist WIN 55,212. However, ketamine analgesia remained intact. For most drugs, there was a sex difference in antinociceptive action, and the impact of deletion of the GIRK2 channel was less in female mice. The deletion of the GIRK2 channel blocks the opioid-dependent component of stress-induced analgesia (SIA), whereas nonopioid SIA was not changed. We propose that opioid, α adrenergic, muscarinic cholinergic, γ-aminobutyric acid-B, and cannabinoid receptors are coupled with postsynaptic GIRK2 channels in vivo. Furthermore, this pathway accounts for essentially all of the antinociceptive effects in males, although females appear to recruit additional signal transduction mechanisms for some analgesic drugs.
机译:G蛋白偶联的内向整流钾通道(GIRKs)提供了众多神经递质受体与突触传递调控之间的共同纽带。我们询问GIRKs是否规定了由作用于与GIRKs结合的多种受体的药物产生的单一行为作用。通过使用GIRK2-null突变小鼠,我们发现乙醇,oxotremorine,尼古丁,巴氯芬,可乐定和大麻素受体激动剂WIN 55,212的镇痛作用(热板试验)显着降低或完全消除。但是,氯胺酮镇痛仍保持不变。对于大多数药物而言,在抗伤害感受作用方面存在性别差异,并且在雌性小鼠中,GIRK2通道缺失的影响较小。 GIRK2通道的删除会阻止应激诱导镇痛(SIA)的阿片类药物依赖性成分,而非阿片类药物SIA则没有改变。我们建议阿片类药物,α肾上腺素,毒蕈碱胆碱能,γ-氨基丁酸-B和大麻素受体与体内的突触后GIRK2通道耦合。此外,尽管女性似乎为某些止痛药募集额外的信号转导机制,但该途径基本上解释了男性的所有镇痛作用。

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