Department of Neuroscience, Ohio State University, Columbus, OH, USA.
J Biol Rhythms. 2010 Dec;25(6):410-20. doi: 10.1177/0748730410381229.
The transcriptional feedback circuit, which is at the core of the suprachiasmatic nucleus (SCN) circadian (i.e., 24 h) clock, is tightly coupled to both external entrainment cues, such as light, as well as rhythmic cues that arise on a system-wide level within the SCN. One potential signaling pathway by which these cues are conveyed to the molecular clock is the CREB/CRE transcriptional cascade. In this study, we employed a tetracycline-inducible CREB repressor mouse strain, in which approximately 60% of the SCN neurons express the transgene, to test CREB functionality in the clock and its effects on overt rhythmicity. We show that attenuated CREB signaling in the SCN led to a significant reduction in light-evoked clock entrainment. An examination of circadian timing revealed that CREB repressor mice exhibited normal free-running rhythms in the absence of external lighting cues. However, under conditions of constant light, which typically leads to a lengthening of the circadian period, CREB repressor mice exhibited a dramatic arrhythmic phenotype, which could be reversed with doxycycline. At a cellular level, the repression of CREB led to a significant reduction in both the expression of the circadian clock proteins PERIOD1 and PERIOD2 and the clock output hormones AVP and VIP. Together, these data support the idea that the CRE transcriptional pathway orchestrates transcriptional events that are essential for both the maintenance of SCN timing and light entrainment of the circadian clock.
转录反馈回路是视交叉上核 (SCN) 昼夜节律 (即 24 小时) 时钟的核心,它与外部时间线索紧密耦合,如光,以及在 SCN 内系统范围内产生的节律线索。这些线索传递到分子钟的一个潜在信号通路是 CREB/CRE 转录级联。在这项研究中,我们使用了一种四环素诱导型 CREB 抑制剂小鼠品系,其中大约 60%的 SCN 神经元表达转基因,以测试时钟中的 CREB 功能及其对明显节律性的影响。我们表明,SCN 中减弱的 CREB 信号导致光诱发时钟同步的显著减少。对昼夜节律计时的检查表明,在没有外部照明线索的情况下,CREB 抑制剂小鼠表现出正常的自由运行节律。然而,在持续光照条件下,通常会导致昼夜周期延长,CREB 抑制剂小鼠表现出明显的心律失常表型,这种表型可以通过强力霉素逆转。在细胞水平上,CREB 的抑制导致昼夜节律蛋白 PERIOD1 和 PERIOD2 的表达以及时钟输出激素 AVP 和 VIP 的显著减少。总之,这些数据支持了这样一种观点,即 CRE 转录途径协调了对 SCN 计时和昼夜节律的光同步至关重要的转录事件。