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CLOCK-mediated acetylation of BMAL1 controls circadian function

机译:时钟介导的BMAL1乙酰化控制昼夜节律功能

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摘要

Regulation of circadian physiology relies on the interplay of interconnected transcriptional-translational feedback loops. The CLOCK-BMAL1 complex activates clock-controlled genes, including cryptochromes (Crys), the products of which act as repressors by interacting directly with CLOCK-BMAL1. We have demonstrated that CLOCK possesses intrinsic histone acetyltransferase activity and that this enzymatic function contributes to chromatin-remodelling events implicated in circadian control of gene expression. Here we show that CLOCK also acetylates a non-histone substrate: its own partner, BMAL1, is specifically acetylated on a unique, highly conserved Lys537 residue. BMAL1 undergoes rhythmic acetylation in mouse liver, with a timing that parallels the downregulation of circadian transcription of clock-controlled genes. BMAL1 acetylation facilitates recruitment of CRY1 to CLOCK-BMAL1, thereby promoting transcriptional repression. Importantly, ectopic expression of a K537R-mutated BMAL1 is not able to rescue circadian rhythmicity in a cellular model of peripheral clock. These findings reveal that the enzymatic interplay between two clock core components6'7 is crucial for the circadian machinery.
机译:昼夜生理的调节依赖于相互关联的转录-翻译反馈环的相互作用。 CLOCK-BMAL1复合物激活了时钟控制的基因,包括隐色染料(Crys),其产物通过与CLOCK-BMAL1直接相互作用而充当阻遏物。我们已经证明,CLOCK具有内在的组蛋白乙酰转移酶活性,并且这种酶促功能促成涉及基因表达的昼夜节律控制的染色质重塑事件。在这里,我们显示CLOCK还可以乙酰化非组蛋白底物:其自身的伴侣BMAL1在独特的高度保守的Lys537残基上被特异性乙酰化。 BMAL1在小鼠肝脏中经历有节奏的乙酰化,其时间与时钟控制基因的生物钟转录的下调平行。 BMAL1乙酰化促进CRY1募集到CLOCK-BMAL1,从而促进转录抑制。重要的是,在外围时钟细胞模型中,K537R突变的BMAL1的异位表达不能挽救昼夜节律。这些发现表明,两个时钟核心组件6'7之间的酶相互作用对于生物钟机制至关重要。

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