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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Nicotinic-acetylcholine receptors are functionally coupled to the nitric oxide/cGMP-pathway in insect neurons.
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Nicotinic-acetylcholine receptors are functionally coupled to the nitric oxide/cGMP-pathway in insect neurons.

机译:烟碱乙酰胆碱受体在功能上与昆虫神经元中的一氧化氮/ cGMP途径偶联。

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摘要

In addition to their ionotropic role, neuronal nicotinic acetylcholine receptors (nAChRs) can influence second messenger levels, transmitter release and gene transcription. In this study, we show that nAChRs in an insect CNS control cGMP levels by coupling to NO production. In conditions that inhibit spiking, nicotine induced cGMP synthesis. This increase in cGMP was blocked by nicotinic antagonists, and by inhibitors of both nitric oxide synthase and soluble guanylyl cyclase. The nicotinic-evoked increase in cGMP was localized to specific NO-sensitive neurons in the CNS, several of which are identified motoneurons. Because NO production requires Ca2+, we investigated the effect of nicotinic stimulation on [Ca2+]i in cultured neurons. We found that activation of nAChRs increased [Ca2+]i, which was blocked by nAChR antagonists. Nicotinic stimulation of neurons in the isolated CNS in low-Na+, also evoked increases in [Ca2+]i independent of fast changes in voltage. In addition, approximately 10% of the nicotinic-evoked [Ca2+]i increase in cultured neurons persisted when voltage-gated Ca2+ channels were blocked by Ni2+. Under the same conditions, nicotinic stimulation of cGMP in the CNS was unaffected. These combined results suggest that nicotinic stimulation is coupled to NOS potentially by directly gating Ca2+.
机译:除了它们的离子作用外,神经元烟碱乙酰胆碱受体(nAChRs)还可影响第二信使水平,递质释放和基因转录。在这项研究中,我们表明,昆虫中枢神经系统中的nAChRs通过与NO产生耦合来控制cGMP水平。在抑制峰值的条件下,尼古丁诱导cGMP合成。烟碱类拮抗剂和一氧化氮合酶和可溶性鸟苷酸环化酶的抑制剂均阻止了cGMP的这种增加。烟碱引起的cGMP的增加被定位于CNS中特定的NO敏感神经元,其中一些被确定为运动神经元。因为NO的产生需要Ca2 +,所以我们研究了烟碱刺激对培养神经元中[Ca2 +] i的影响。我们发现nAChRs的激活增加了[Ca2 +] i,这被nAChR拮抗剂阻断。在低Na +下,分离的CNS中神经元的烟碱刺激也引起[Ca2 +] i的增加,而与电压的快速变化无关。另外,当电压门控的Ca2 +通道被Ni2 +阻断时,在培养的神经元中约10%的烟碱诱发[Ca2 +] i增加持续存在。在相同条件下,中枢神经系统中烟碱刺激cGMP不受影响。这些综合结果表明,烟碱刺激可能通过直接门控Ca2 +与NOS偶联。

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