首页> 美国卫生研究院文献>The Journal of Neuroscience >IA Channels Encoded by Kv1.4 and Kv4.2 Regulate Neuronal Firing in the Suprachiasmatic Nucleus and Circadian Rhythms in Locomotor Activity
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IA Channels Encoded by Kv1.4 and Kv4.2 Regulate Neuronal Firing in the Suprachiasmatic Nucleus and Circadian Rhythms in Locomotor Activity

机译:由Kv1.4和Kv4.2编码的IA通道调节运动能力上上视神经核和昼夜节律的神经元放电。

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摘要

Neurons in the suprachiasmatic nucleus (SCN) display coordinated circadian changes in electrical activity that are critical for daily rhythms in physiology, metabolism, and behavior. SCN neurons depolarize spontaneously and fire repetitively during the day and hyperpolarize, drastically reducing firing rates, at night. To explore the hypothesis that rapidly activating and inactivating A-type (IA) voltage-gated K+ (Kv) channels, which are also active at subthreshold membrane potentials, are critical regulators of the excitability of SCN neurons, we examined locomotor activity and SCN firing in mice lacking Kv1.4 (Kv1.4−/−), Kv4.2 (Kv4.2−/−), or Kv4.3 (Kv4.3−/−), the pore-forming (α) subunits of IA channels. Mice lacking either Kv1.4 or Kv4.2 α subunits have markedly shorter (0.5 h) periods of locomotor activity than wild-type (WT) mice. In vitro extracellular multi-electrode recordings revealed that Kv1.4−/− and Kv4.2−/− SCN neurons display circadian rhythms in repetitive firing, but with shorter periods (0.5 h) than WT cells. In contrast, the periods of wheel-running activity in Kv4.3−/− mice and firing in Kv4.3−/− SCN neurons were indistinguishable from WT animals and neurons. Quantitative real-time PCR revealed that the transcripts encoding all three Kv channel α subunits, Kv1.4, Kv4.2, and Kv4.3, are expressed constitutively throughout the day and night in the SCN. Together, these results demonstrate that Kv1.4- and Kv4.2-encoded IA channels regulate the intrinsic excitability of SCN neurons during the day and night and determine the period and amplitude of circadian rhythms in SCN neuron firing and locomotor behavior.
机译:视交叉上核(SCN)中的神经元显示协调的昼夜节律性电活动变化,这对于生理,代谢和行为的日常节律至关重要。 SCN神经元在白天自发地消极化并重复发射,而在晚上则超极化,从而大大降低发射率。为了探索这样的假设:快速激活和失活的A型(IA)电压门控的K + (Kv)通道(也可在亚阈值膜电位下激活)是SCN神经元兴奋性的关键调节因子。 ,我们检查了缺乏Kv1.4(Kv1.4 -/-),Kv4.2(Kv4.2 -/-)或Kv4.3(Kv4.3 -/-),IA通道的成孔(α)亚基。缺乏Kv1.4或Kv4.2α亚基的小鼠的运动活动时间明显短于野生型(WT)小鼠(0.5 h)。体外细胞外多电极记录显示,Kv1.4 -/-和Kv4.2 -/- SCN神经元在重复发射中具有昼夜节律,但周期较短( 0.5 h)比WT细胞。相反,Kv4.3 -/-小鼠的轮转活动和Kv4.3 -/- SCN神经元的放电周期与野生型动物和神经元没有区别。 。实时定量PCR显示,编码Sv中的所有三个Kv通道α亚基Kv1.4,Kv4.2和Kv4.3的转录本在白天和晚上都组成性表达。总之,这些结果表明,Kv1.4和Kv4.2编码的IA通道在白天和黑夜调节SCN神经元的固有兴奋性,并确定SCN神经元激发和运动行为的昼夜节律的周期和幅度。

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