Department of Biological Sciences and 21st Frontier Program in Neuroscience, Seoul National University, Seoul 151-742, Korea.
J Cell Sci. 2010 Oct 15;123(Pt 20):3547-57. doi: 10.1242/jcs.070300.
The transcription factor CLOCK-BMAL1 is a core component of the molecular clock machinery that drives circadian gene expression and physiology in mammals. Recently, we reported that this heterodimeric transcription factor functions as a signaling molecule in response to the resetting stimuli via the Ca²+-dependent protein kinase C pathway. Here, we demonstrate that the CREB-binding protein (CBP) plays a key role in rapid activation of the CLOCK-BMAL1 heterodimer that leads to phase resetting of the circadian clock. Under physiological conditions, a bimolecular fluorescence complementation (BiFC) assay revealed that CLOCK and BMAL1 dimerize in the cytoplasm and subsequently translocate into the nucleus in response to serum stimuli (mean time duration was 29.2 minutes and mean velocity 0.7 μm/minute). Concomitantly, BMAL1 rapidly recruited CBP on Per1 promoter E-box, but not p300 (a functional analog of CBP), in the discrete nuclear foci. However, recruitment of CBP by cAMP/Ca²+ response element-binding (CREB) protein on CRE was not markedly increased upon delivery of the resetting stimuli. Furthermore, overexpression of CBP greatly potentiated the CLOCK-BMAL1-mediated Per1 transcription, and this effect was completely abolished by site-directed mutation of E-box elements, but not by the mutation of CRE in the Per1 promoter. Furthermore, molecular knockdown of CBP severely dampened circadian oscillation of clock gene expression triggered by the resetting stimuli. These findings suggest that CBP recruitment by BMAL1 mediates acute transactivation of CLOCK-BMAL1, thereby inducing immediate-early Per1 transcription and phase resetting of the circadian clock.
转录因子 CLOCK-BMAL1 是驱动哺乳动物生物钟基因表达和生理节律的分子钟机制的核心组成部分。最近,我们报道称,这种异二聚体转录因子作为信号分子,通过 Ca²+-依赖性蛋白激酶 C 途径对重置刺激做出反应。在这里,我们证明了 CREB 结合蛋白(CBP)在快速激活 CLOCK-BMAL1 异二聚体中起着关键作用,从而导致生物钟的相位重置。在生理条件下,双分子荧光互补(BiFC)测定显示,CLOCK 和 BMAL1 在细胞质中二聚化,然后响应血清刺激进入细胞核(平均持续时间为 29.2 分钟,平均速度为 0.7 μm/分钟)。同时,BMAL1 迅速招募 CBP 到 Per1 启动子 E 盒上,但不招募 p300(CBP 的功能类似物),在离散的核焦点中。然而,在给予重置刺激时,cAMP/Ca²+ 反应元件结合(CREB)蛋白在 CRE 上对 CREB 的募集并没有明显增加。此外,CBP 的过表达极大地增强了 CLOCK-BMAL1 介导的 Per1 转录,而这种效应完全被 E 盒元件的定点突变所消除,但不是 Per1 启动子中的 CRE 突变所消除。此外,CBP 的分子敲低严重抑制了由重置刺激引发的时钟基因表达的昼夜节律振荡。这些发现表明,BMAL1 招募的 CBP 介导了 CLOCK-BMAL1 的急性转录激活,从而诱导立即早期的 Per1 转录和生物钟的相位重置。