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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >High firing rate of neonatal hippocampal interneurons is caused by attenuation of afterhyperpolarizing potassium currents by tonically active kainate receptors.
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High firing rate of neonatal hippocampal interneurons is caused by attenuation of afterhyperpolarizing potassium currents by tonically active kainate receptors.

机译:新生儿海马型细胞间的高烧制率是通过聚焦活性的Kinate受体衰减后胚性钾电流而引起的。

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摘要

In the neonatal hippocampus, the activity of interneurons shapes early network bursts that are important for the establishment of neuronal connectivity. However, mechanisms controlling the firing of immature interneurons remain elusive. We now show that the spontaneous firing rate of CA3 stratum lucidum interneurons markedly decreases during early postnatal development because of changes in the properties of GluK1 (formerly known as GluR5) subunit-containing kainate receptors (KARs). In the neonate, activation of KARs by ambient glutamate exerts a tonic inhibition of the medium-duration afterhyperpolarization (mAHP) by a G-protein-dependent mechanism, permitting a high interneuronal firing rate. During development, the amplitude of the apamine-sensitive K+ currents responsible for the mAHP increases dramatically because of decoupling between KAR activation and mAHP modulation, leading to decreased interneuronal firing. The developmental shift in the KAR function and its consequences on interneuronal activity are likely to have a fundamental role in the maturation of the synchronous neuronal oscillations typical for adult hippocampal circuitry.
机译:在新生儿海马中,中间核的活性形状对建立神经元连接的早期网络突发。然而,控制未成熟的中间核烧制的机制仍然难以捉摸。我们现在表明,由于Gluk1(以前称为Glur5)亚单位的Kinate受体(KARS)的性质的变化,Ca3 Stratum Lucidum Interpeeurons的自发射击率明显降低了出生的早期开发。在新生儿中,通过环境谷氨酸的kars激活kars通过g-蛋白依赖性机制施加介质抑制介质持续时间(mahp),允许高细胞烧制率。在开发期间,由于kar活化和mAHp调制之间的去耦,负责Mahp的Anamine敏感k +电流的幅度显着增加,导致是有间骨性烧制的降低。 KAR功能的发育转变及其对细胞性活动的后果可能在成人海马电路的典型同步神经元振荡的成熟中具有基本作用。

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