Department of Molecular Biology, Sciences III, University of Geneva, and National Centre of Competence in Research Frontiers in Genetics, 1211 Geneva, Switzerland.
Mol Cell. 2012 Oct 26;48(2):277-87. doi: 10.1016/j.molcel.2012.08.012. Epub 2012 Sep 13.
The transcription factors BMAL1 and CLOCK drive the circadian transcription of clock and clock-controlled genes, such as Dbp. To investigate the kinetics of BMAL1 binding to target genes in real time, we generated a cell line harboring tandem arrays of Dbp repeats and monitored the binding of a fluorescent BMAL1 fusion protein to these arrays by time-lapse microscopy. BMAL1 occupancy at the Dbp locus was highly circadian and strictly dependent on CLOCK. Moreover, BMAL1-CLOCK associations with Dbp were extremely unstable and displayed stochastic, proteasome-dependent fluctuations. Proteasome inhibition prolonged the residence time of BMAL1-CLOCK but resulted in an immediate attenuation of Dbp transcription. In cells harboring a single Dbp-luciferase reporter gene copy, this silencing was shown to be caused by a decrease in both the frequencies and sizes of transcriptional bursts. Thus, BMAL1 and CLOCK may act as Kamikaze activators, in that they are rapidly degraded once bound to Dbp chromatin.
转录因子 BMAL1 和 CLOCK 驱动时钟和时钟控制基因的昼夜转录,如 Dbp。为了实时研究 BMAL1 与靶基因结合的动力学,我们构建了一个含有串联 Dbp 重复序列的细胞系,并通过延时显微镜监测荧光 BMAL1 融合蛋白与这些序列的结合。Dbp 基因座上的 BMAL1 占有率具有高度的昼夜节律性,并且严格依赖于 CLOCK。此外,BMAL1-CLOCK 与 Dbp 的结合极其不稳定,表现出随机的、依赖蛋白酶体的波动。蛋白酶体抑制延长了 BMAL1-CLOCK 的停留时间,但导致 Dbp 转录立即衰减。在含有单个 Dbp-luciferase 报告基因拷贝的细胞中,这种沉默是由转录爆发的频率和大小的降低引起的。因此,BMAL1 和 CLOCK 可能作为神风特工队的激活剂,因为它们一旦与 Dbp 染色质结合就会迅速降解。