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首页> 外文期刊>Journal of Neurophysiology >Nitric oxide/cGMP/PKG signaling pathway activated by Mrtype muscarinic acetylcholine receptor cascade inhibits Na+-activated K+ currents in Kenyon cells
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Nitric oxide/cGMP/PKG signaling pathway activated by Mrtype muscarinic acetylcholine receptor cascade inhibits Na+-activated K+ currents in Kenyon cells

机译:Mrtype毒蕈碱型乙酰胆碱受体级联激活的一氧化氮/ cGMP / PKG信号通路抑制Kenyon细胞中Na +激活的K +电流

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Hasebe M, Yoshino M. Nitric oxide/cGMP/PKG signaling pathway activated by Mrtype muscarinic acetylcholine receptor cascade inhibits Na+-activated K+ currents in Kenyon cells. J Neu-rophysiol 115: 3174-3185, 2016. First published March 16, 2016; doi:10.1152/jn.00036.2015.—The interneurons of the mushroom body, known as Kenyon cells, are essential for the long-term memory of olfactory associative learning in some insects. Some studies have reported that nitric oxide (NO) is strongly related to this long-term memory in Kenyon cells. However, the target molecules and upstream and downstream NO signaling cascades are not completely understood. Here we analyzed the effect of the NO signaling cascade on Na+-activated K+ (KNa) channel activity in Kenyon cells of crickets (Gryllus bimaculatus)
机译:Hasebe M,Yoshino M. Mrtype毒蕈碱型乙酰胆碱受体级联反应激活的一氧化氮/ cGMP / PKG信号通路抑制了Kenyon细胞中Na +激活的K +电流。 J Neu-rophysiol 115:3174-3185,2016年。2016年3月16日首次发布; doi:10.1152 / jn.00036.2015。—蘑菇体的内部神经元,称为Kenyon细胞,对于某些昆虫的嗅觉联想学习的长期记忆至关重要。一些研究报告说,一氧化氮(NO)与Kenyon细胞中的这种长期记忆密切相关。但是,目标分子和上游和下游的NO信号级联还不完全了解。在这里,我们分析了NO信号级联对on的Kenyon细胞中Na +激活的K +(KNa)通道活性的影响。

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