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Metabotropic glutamate receptor subtype 1 regulates sodium currents in rat neocortical pyramidal neurons

机译:代谢型谷氨酸受体亚型1调节大鼠新皮层锥体神经元中的钠电流

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摘要

Brain sodium channels (NaChs) are regulated by various neurotransmitters such as acetylcholine, serotonin and dopamine. However, it is not known whether NaCh activity is regulated by glutamate, the principal brain neurotransmitter. We show here that activation of metabotropic glutamate receptor (mGluR) subtype 1 regulates fast transient (INaT) and persistent Na+ currents (INaP) in cortical pyramidal neurons. A selective agonist of group I mGluR, (S)-3,5-dihydroxyphenylglycine (DHPG), reduced action potential amplitude and decreased INaT. This reduction was blocked when DHPG was applied in the presence of selective mGluR1 antagonists. The DHPG-induced reduction of the current was accompanied by a shift of both the inactivation curve of INaT and the activation curve of INaP. These effects were dependent on the activation of PKC. The respective role of these two regulatory processes on neuronal excitability was determined by simulating transient and persistent Na+ conductances (GNaT and GNaP) with fast dynamic-clamp techniques. The facilitated activation of GNaP increased excitability near the threshold, but, when combined with the down-regulation of GNaT, repetitive firing was strongly decreased. Consistent with this finding, the mGluR1 antagonist LY367385 increased neuronal excitability when glutamatergic synaptic activity was stimulated with high external K+. We conclude that mGluR1-dependent regulation of Na+ current depresses neuronal excitability, which thus might constitute a novel mechanism of homeostatic regulation acting during intense glutamatergic synaptic activity.
机译:脑钠通道(NaChs)受各种神经递质(如乙酰胆碱,5-羟色胺和多巴胺)的调节。但是,尚不清楚NaCh的活性是否受谷氨酸(主要的大脑神经递质)调控。我们在这里显示,代谢型谷氨酸受体(mGluR)亚型1的激活调节皮质锥体神经元中的快速瞬变(INaT)和持久性Na +电流(INaP)。 I组mGluR,(S)-3,5-二羟基苯基甘氨酸(DHPG)的选择性激动剂降低了动作电位振幅并降低了INaT。当在选择性mGluR1拮抗剂存在下应用DHPG时,这种减少被阻止。 DHPG诱导的电流减少伴随着INaT灭活曲线和INaP激活曲线的移动。这些作用取决于PKC的活化。这两种调节过程对神经元兴奋性的各自作用通过使用快速动态钳技术模拟瞬时和持久性Na +电导(GNaT和GNaP)来确定。促进的GNaP激活增加了阈值附近的兴奋性,但是,当与GNaT的下调结合时,重复放电会大大降低。与该发现一致,当用高外部K +刺激谷氨酸能突触活性时,mGluR1拮抗剂LY367385增加了神经元兴奋性。我们得出的结论是,Na +电流的mGluR1依赖性调节抑制神经元兴奋性,因此可能构成在强烈的谷氨酸能突触活动过程中发挥稳态作用的新型机制。

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