Yu Wangjie, Zheng Hao, Houl Jerry H, Dauwalder Brigitte, Hardin Paul E
Department of Biology and Biochemistry, University of Houston, Houston, Texas 77204-5001, USA.
Genes Dev. 2006 Mar 15;20(6):723-33. doi: 10.1101/gad.1404406.
Transcriptional activation by CLOCK-CYCLE (CLK-CYC) heterodimers and repression by PERIOD-TIMELESS (PER-TIM) heterodimers are essential for circadian oscillator function in Drosophila. PER-TIM was previously found to interact with CLK-CYC to repress transcription, and here we show that this interaction inhibits binding of CLK-CYC to E-box regulatory elements in vivo. Coincident with the interaction between PER-TIM and CLK-CYC is the hyperphosphorylation of CLK. This hyperphosphorylation occurs in parallel with the PER-dependent entry of DOUBLE-TIME (DBT) kinase into a complex with CLK-CYC, where DBT destabilizes both CLK and PER. Once PER and CLK are degraded, a novel hypophosphorylated form of CLK accumulates in parallel with E-box binding and transcriptional activation. These studies suggest that PER-dependent rhythms in CLK phosphorylation control rhythms in E-box-dependent transcription and CLK stability, thus linking PER and CLK function during the circadian cycle and distinguishing the transcriptional feedback mechanism in flies from that in mammals.
由CLOCK-CYCLE(CLK-CYC)异源二聚体介导的转录激活以及由PERIOD-TIMELESS(PER-TIM)异源二聚体介导的转录抑制对于果蝇的昼夜节律振荡器功能至关重要。先前发现PER-TIM与CLK-CYC相互作用以抑制转录,并且我们在此表明这种相互作用在体内抑制CLK-CYC与E-box调控元件的结合。与PER-TIM和CLK-CYC之间的相互作用同时发生的是CLK的过度磷酸化。这种过度磷酸化与DOUBLE-TIME(DBT)激酶与CLK-CYC形成复合物的PER依赖性进入同时发生,其中DBT使CLK和PER都不稳定。一旦PER和CLK降解,一种新的低磷酸化形式的CLK会与E-box结合和转录激活同时积累。这些研究表明,CLK磷酸化中依赖于PER的节律控制着E-box依赖性转录和CLK稳定性的节律,从而在昼夜节律周期中连接了PER和CLK的功能,并区分了果蝇与哺乳动物中的转录反馈机制。