Department of Physiology, University of Maryland School of Medicine, Baltimore, MD 21201, USA.
Am J Physiol Cell Physiol. 2013 Feb 15;304(4):C299-311. doi: 10.1152/ajpcell.00302.2012. Epub 2012 Nov 21.
In mammals, almost all aspects of circadian rhythmicity are attributed to activity in a discrete neural circuit of the hypothalamus, the suprachiasmatic nucleus (SCN). A 24-h rhythm in spontaneous firing is the fundamental neural intermediary to circadian behavior, but the ionic mechanisms that pattern circuit rhythmicity, and the integrated impact on behavior, are not well studied. Here, we demonstrate that daily modulation of a major component of the nighttime-phased suppressive K(+) current, encoded by the BK Ca(2+)-activated K(+) current channel (K(Ca)1.1 or Kcnma1), is a critical arbiter of circadian rhythmicity in the SCN circuit. Aberrant induction of BK current during the day in transgenic mice using a Per1 promoter (Tg-BK(R207Q)) reduced SCN firing or silenced neurons, decreasing the circadian amplitude of the ensemble circuit rhythm. Changes in cellular and circuit excitability in Tg-BK(R207Q) SCNs were correlated with elongated behavioral active periods and enhanced responses to phase-shifting stimuli. Unexpectedly, despite the severe reduction in circuit amplitude, circadian behavioral amplitudes in Tg-BK(R207Q) mice were relatively normal. These data demonstrate that downregulation of the BK current during the day is essential for the high amplitude neural activity pattern in the SCN that restricts locomotor activity to the appropriate phase and maintains the clock's robustness against perturbation. However, a residually rhythmic subset prevails over the ensemble circuit to drive the fundamental circadian behavioral rhythm.
在哺乳动物中,几乎所有的昼夜节律都归因于下丘脑的一个离散神经回路——视交叉上核(SCN)的活动。自发放电的 24 小时节律是昼夜行为的基本神经中介,但调节回路节律的离子机制以及对行为的综合影响尚未得到很好的研究。在这里,我们证明了编码 BK Ca(2+)激活 K(+)电流通道(K(Ca)1.1 或 Kcnma1)的夜间相抑制性 K(+)电流的主要成分的每日调制是 SCN 回路昼夜节律的关键决定因素。使用 Per1 启动子(Tg-BK(R207Q))在转基因小鼠中白天异常诱导 BK 电流,会降低 SCN 放电或沉默神经元,从而降低整体回路节律的昼夜幅度。Tg-BK(R207Q) SCN 中细胞和电路兴奋性的变化与行为活跃期的延长和对相移刺激的反应增强有关。出乎意料的是,尽管电路幅度严重降低,但 Tg-BK(R207Q) 小鼠的昼夜行为幅度相对正常。这些数据表明,白天 BK 电流的下调对于 SCN 中高振幅神经活动模式是必不可少的,这种模式将运动活动限制在适当的阶段,并保持时钟对干扰的稳健性。然而,一个剩余的有节奏子集胜过整体电路,驱动基本的昼夜行为节律。