首页> 美国卫生研究院文献>The Journal of Neuroscience >G-Protein-Gated Potassium Channels Containing Kir3.2 and Kir3.3 Subunits Mediate the Acute Inhibitory Effects of Opioids on Locus Ceruleus Neurons
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G-Protein-Gated Potassium Channels Containing Kir3.2 and Kir3.3 Subunits Mediate the Acute Inhibitory Effects of Opioids on Locus Ceruleus Neurons

机译:包含Kir3.2和Kir3.3亚基的G蛋白门控钾通道介导阿片类药物对蓝斑神经元的急性抑制作用。

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摘要

Acute opioid administration causes hyperpolarization of locus ceruleus (LC) neurons. A G-protein-gated, inwardly rectifying potassium (GIRK/KG) conductance and a cAMP-dependent cation conductance have both been implicated in this effect; the relative contribution of each conductance remains controversial. Here, the contribution of KG channels to the inhibitory effects of opioids on LC neurons was examined using mice that lack the KG channel subunits Kir3.2 and Kir3.3. Resting membrane potentials of LC neurons in brain slices from Kir3.2 knock-out, Kir3.3 knock-out, and Kir3.2/3.3 double knock-out mice were depolarized by 15–20 mV relative to LC neurons from wild-type mice. [Met]5enkephalin-induced hyperpolarization and whole-cell current were reduced by 40% in LC neurons from Kir3.2 knock-out mice and by 80% in neurons from Kir3.2/3.3 double knock-out mice. The small opioid-sensitive current observed in LC neurons from Kir3.2/3.3 double knock-out mice was virtually eliminated with the nonselective potassium channel blockers barium and cesium. We conclude that the acute opioid inhibition of LC neurons is mediated primarily by the activation of G-protein-gated potassium channels and that the cAMP-dependent cation conductance does not contribute significantly to this effect.
机译:急性阿片类药物的给药会导致蓝斑(LC)神经元超极化。 G蛋白门控的内向整流钾(GIRK / KG)电导和cAMP依赖的阳离子电导均与这种效应有关。每个电导的相对贡献仍然存在争议。在这里,使用缺少KG通道亚基Kir3.2和Kir3.3的小鼠检查了KG通道对阿片类药物对LC神经元抑制作用的贡献。与野生型LC神经元相比,Kir3.2基因敲除,Kir3.3基因敲除和Kir3.2 / 3.3基因双敲除小鼠脑切片中LC神经元的静息膜电位被去极化15–20 mV。老鼠。 [Met] 5 脑啡肽诱导的超极化和全细胞电流在Kir3.2基因敲除小鼠的LC神经元中降低了40%,在Kir3.2 / 3.3双重基因敲除小鼠的神经元中降低了80%出老鼠。通过非选择性钾通道阻滞剂钡和铯,实际上消除了从Kir3.2 / 3.3双敲除小鼠的LC神经元中观察到的小阿片样物质敏感电流。我们得出结论,LC神经元的急性阿片样物质抑制主要是由G蛋白门控钾通道的激活介导的,而cAMP依赖性阳离子电导对这种作用没有显着贡献。

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