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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Muscarinic inhibition of nicotinic transmission in rat sympathetic neurons and adrenal chromaffin cells
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Muscarinic inhibition of nicotinic transmission in rat sympathetic neurons and adrenal chromaffin cells

机译:毒蕈碱抑制大鼠交感神经元和肾上腺嗜铬细胞烟碱传递

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摘要

Little is known about the interactions between nicotinic and muscarinic acetylcholine receptors (nAChRs and mAChRs). Here we report that methacholine (MCh), a selective agonist of mAChRs, inhibited up to 80% of nicotine-induced nAChR currents in sympathetic superior cervical ganglion neurons and adrenal chromaffin cells. The muscarine-induced inhibition (MiI) substantially reduced ACh-induced membrane currents through nAChRs and quantal neurotransmitter release. The MiI was time- and temperature-dependent. The slow recovery of nAChR current after washout of MCh, as well as the high value of Q10 (3.2), suggested, instead of a direct open-channel blockade, an intracellular metabotropic process. The effects of GTP-gamma-S, GDP-beta-S and pertussis toxin suggested that MiI was mediated by G-protein signalling. Inhibitors of protein kinase C (bisindolymaleimide-Bis), protein kinase A (H89) and PIP2 depletion attenuated the MiI, indicating that a second messenger pathway is involved in this process. Taken together, these data suggest that mAChRs negatively modulated nAChRs via a G-protein-mediated second messenger pathway. The time dependence suggests that MiI may provide a novel mechanism for post-synaptic adaptation in all cellseurons and synapses expressing both types of AChRs.
机译:关于烟碱和毒蕈碱型乙酰胆碱受体(nAChR和mAChR)之间的相互作用了解甚少。在这里我们报告说,乙酰甲胆碱(MCh),一种mAChRs的选择性激动剂,可抑制交感神经上皮神经节神经元和肾上腺嗜铬细胞中高达80%的烟碱诱导的nAChR电流。毒蕈碱诱导的抑制(MiI)通过nAChRs和定量神经递质释放大大降低了ACh诱导的膜电流。 MiI与时间和温度有关。洗出MCh后nAChR电流恢复缓慢,Q10值较高(3.2),这提示了细胞内代谢过程而非直接的开放通道阻断。 GTP-γ-S,GDP-β-S和百日咳毒素的影响表明MiI由G蛋白信号介导。蛋白激酶C(双二烯丙基马来酰亚胺-Bis),蛋白激酶A(H89)和PIP2耗尽的抑制剂减弱了MiI,表明该过程涉及第二信使途径。综上所述,这些数据表明,mAChRs通过G蛋白介导的第二信使途径对nAChRs产生负调控。时间依赖性表明,MiI可能为表达两种类型的AChR的所有细胞/神经元和突触提供突触后适应的新机制。

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