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mGluR5‐dependent modulation of dendritic excitability in CA1 pyramidal neurons mediated by enhancement of persistent Na + + currents

机译:通过增强持续Na + +电流介导的CA1金字塔神经元的树突式兴奋性的MGLUR5依赖性调节

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Key points High‐frequency stimulation (HFS) of the Schaffer collateral pathway activates metabotropic glutamate receptor 5 (mGluR5) signalling in the proximal apical dendrites of CA1 pyramidal neurons. The synaptic activation of mGluR5‐mediated calcium signalling causes a significant increase in persistent sodium current ( I Na,P ) in the dendrites. Increased I Na,P by HFS underlies potentiation of synaptic inputs at both the proximal and distal dendrite, leading to an enhanced probability of action potential firing associated with decreased action potential thresholds. Therefore, HFS‐induced activation of intracellular mGluR5 serves an important role as an instructive signal for potentiation of upcoming inputs by increasing dendritic excitability. Abstract Dendritic Na + channels in pyramidal neurons are known to amplify synaptic signals, thereby facilitating action potential (AP) generation. However, the mechanisms that modulate dendritic Na + channels have remained largely uncharacterized. Here, we report a new form of short‐term plasticity in which proximal excitatory synaptic inputs to hippocampal CA1 pyramidal neurons transiently elevate dendritic excitability. High‐frequency stimulations (HFS) to the Schaffer collateral (SC) pathway activate mGluR5‐dependent Ca 2+ signalling in the apical dendrites, which, with calmodulin, upregulates specifically Nav1.6 channel‐mediated persistent Na + currents ( I Na,P ) in the dendrites. This HFS‐induced increase in dendritic I Na,P results in transient increases in the amplitude of excitatory postsynaptic potentials induced by both proximal SC and distal perforant path stimulation, leading to the enhanced probability of AP firing associated with decreased AP thresholds. Taken together, our study identifies dendritic I Na,P as a novel target for mediating activity‐dependent modulation of dendritic integration and neuronal output.
机译:Schaffer抵押品途径的关键点高频刺激(HFS)在Ca1金字塔神经元的近端顶端树枝状内激活代谢谷氨酸受体5(mgluR5)信号传导。 MGLUR5介导的钙信号传导的突触激活导致树突中持久性钠电流(I Na,P)的显着增加。增加I Na,P by HFS在近端和远端树枝状突触和远端树突处有突出的突出性,导致与减少动作电位阈值相关的动作电位烧制的概率增强。因此,HFS诱导的细胞内MGLUR5的活化是通过增加树突兴奋性来增强越来越多的输入的有效作用。摘要已知锥形神经元中的树突状Na +通道扩增突触信号,从而促进动作电位(AP)产生。然而,调节树突Na +通道的机制在很大程度上是大量的。在此,我们报告了一种新的短期可塑性,其中近端兴奋性突触输入到海马CA1金字塔神经元瞬时提高了树突兴奋性。高频刺激(HFS)到Schaffer抵押品(SC)途径在顶端树突中激活MgluR5依赖性Ca 2+信号传导,其与钙调蛋白,上调特异性Nav1.6通道介导的持久性Na +电流(I Na,P )在树枝状中。这种HFS诱导的树突式I Na的增加,P导致近端SC和远端穿孔路径刺激引起的兴奋性突触电位幅度的瞬时增加,导致与AP阈值减少相关的AP射击的增强概率。我们的研究一起占据了树突状I Na,p作为介导树突式的活动依赖性调节和神经元产量的新靶标。

著录项

  • 来源
    《The Journal of Physiology》 |2018年第17期|共16页
  • 作者单位

    Department of PhysiologySeoul National University College of MedicineSeoul 110‐799 Republic of Korea;

    Department of PhysiologySeoul National University College of MedicineSeoul 110‐799 Republic of Korea;

    Department of Biological SciencesKorea Advanced Institute of Science and TechnologyDaejeon 305‐701;

    Department of PhysiologySeoul National University College of MedicineSeoul 110‐799 Republic of Korea;

    Department of PhysiologySeoul National University College of MedicineSeoul 110‐799 Republic of Korea;

    Department of PhysiologySeoul National University College of MedicineSeoul 110‐799 Republic of Korea;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人体生理学;
  • 关键词

    mGluR5 signaling; dendritic excitability; persistent sodium current;

    机译:MGLUR5信号;树突兴奋性;持久性钠电流;

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