Department of Neuroscience, Ohio State University, Columbus, Ohio 43210, USA.
J Neurosci. 2013 May 22;33(21):9021-7. doi: 10.1523/JNEUROSCI.4202-12.2013.
The CREB/CRE transcriptional pathway has been implicated in circadian clock timing and light-evoked clock resetting. To date, much of the work on CREB in circadian physiology has focused on how changes in the phosphorylation state of CREB regulate the timing processes. However, beyond changes in phosphorylation, CREB-dependent transcription can also be regulated by the CREB coactivator CRTC (CREB-regulated transcription coactivator), also known as TORC (transducer of regulated CREB). Here we profiled both the rhythmic and light-evoked regulation of CRTC1 and CRTC2 in the murine suprachiasmatic nucleus (SCN), the locus of the master mammalian clock. Immunohistochemical analysis revealed rhythmic expression of CRTC1 in the SCN. CRTC1 expression was detected throughout the dorsoventral extent of the SCN in the middle of the subjective day, with limited expression during early night, and late night expression levels intermediate between mid-day and early night levels. In contrast to CRTC1, robust expression of CRTC2 was detected during both the subjective day and night. During early and late subjective night, a brief light pulse induced strong nuclear accumulation of CRTC1 in the SCN. In contrast with CRTC1, photic stimulation did not affect the subcellular localization of CRTC2 in the SCN. Additionally, reporter gene profiling and chromatin immunoprecipitation analysis indicated that CRTC1 was associated with CREB in the 5' regulatory region of the period1 gene, and that overexpression of CRTC1 leads to a marked upregulation in period1 transcription. Together, these data raise the prospect that CRTC1 plays a role in fundamental aspects of SCN clock timing and entrainment.
CREB/CRE 转录途径已被牵涉到生物钟的计时和光引发的生物钟重置中。迄今为止,关于生物钟生理学中 CREB 的大部分工作都集中在 CREB 的磷酸化状态如何调节计时过程上。然而,除了磷酸化的变化之外,CREB 依赖性转录还可以通过 CREB 共激活因子 CRTC(CREB 调节的转录共激活因子),也称为 TORC(调节的 CREB 转导因子)来调节。在这里,我们对 CRTC1 和 CRTC2 在小鼠视交叉上核(SCN)中的节律性和光诱发调节进行了分析,SCN 是哺乳动物主生物钟的位置。免疫组织化学分析显示 CRTC1 在 SCN 中具有节律性表达。在主观白天的中间,CRTC1 表达可在 SCN 的背腹延伸中检测到,在早期夜间表达有限,而在深夜的表达水平介于中间白天和早期夜间之间。与 CRTC1 相反,CRTC2 在主观白天和夜间都有强烈的表达。在主观的早期和晚期夜间,短暂的光脉冲会导致 SCN 中 CRTC1 的核积累强烈增加。与 CRTC1 相反,光刺激不会影响 SCN 中 CRTC2 的亚细胞定位。此外,报告基因分析和染色质免疫沉淀分析表明,CRTC1 与 PER1 基因的 5'调控区中的 CREB 相关,并且 CRTC1 的过表达导致 PER1 转录的显著上调。这些数据表明,CRTC1 在 SCN 计时和适应的基本方面发挥作用。