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DOUBLETIME Plays a Noncatalytic Role To Mediate CLOCK Phosphorylation and Repress CLOCK-Dependent Transcription within the Drosophila Circadian Clock

机译:DOUBLETIME在果蝇生物钟内介导时钟磷酸化并抑制时钟依赖性转录中起非催化作用

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摘要

Circadian clocks keep time via gene expression feedback loops that are controlled by time-of-day-specific changes in the synthesis, activity, and degradation of transcription factors. Within the Drosophila melanogaster circadian clock, DOUBLETIME (DBT) kinase is necessary for the phosphorylation of PERIOD (PER), a transcriptional repressor, and CLOCK (CLK), a transcriptional activator, as CLK-dependent transcription is being repressed. PER- and DBT-containing protein complexes feed back to repress CLK-dependent transcription, but how DBT promotes PER and CLK phosphorylation and how PER and CLK phosphorylation contributes to transcriptional repression have not been defined. Here, we show that DBT catalytic activity is not required for CLK phosphorylation or transcriptional repression and that PER phosphorylation is dispensable for repressing CLK-dependent transcription. These results support a model in which DBT plays a novel noncatalytic role in recruiting additional kinases that phosphorylate CLK, thereby repressing transcription. A similar mechanism likely operates in mammals, given the conserved activities of PER, DBT, and CLK orthologs.
机译:昼夜节律时钟通过基因表达反馈环来保持时间,该环受一天中特定时间的转录因子合成,活性和降解的变化所控制。在果蝇的昼夜节律时钟中,DOUBLETIME(DBT)激酶对于转录抑制因子PERIOD(PER)和转录激活因子CLOCK(CLK)的磷酸化是必需的,因为CLK依赖的转录受到抑制。含PER和DBT的蛋白复合物可反馈以抑制CLK依赖性转录,但是还没有确定DBT如何促进PER和CLK磷酸化以及PER和CLK磷酸化如何促进转录抑制。在这里,我们表明DBT催化活性不是CLK磷酸化或转录抑制所必需的,而PER磷酸化对于抑制CLK依赖性转录是可有可无的。这些结果支持了一个模型,在该模型中,DBT在募集补充磷酸化CLK从而抑制转录的其他激酶方面发挥了新型的非催化作用。鉴于PER,DBT和CLK直系同源基因的保守活动,类似的机制可能在哺乳动物中起作用。

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