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Delay in feedback repression by cryptochrome 1 Is required for circadian clock function

机译:昼夜节律功能需要使用隐色1延迟反馈抑制

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摘要

Direct evidence for the requirement of delay in feedback repression in the mammalian circadian clock has been elusive. Cryptochrome 1 (Cry1), an essential clock component, displays evening-time expression and serves as a strong repressor at morning-time elements (E box/E′ box). In this study, we reveal that a combination of day-time elements (D box) within the Cry1-proximal promoter and night-time elements (RREs) within its intronic enhancer gives rise to evening-time expression. A synthetic composite promoter produced evening-time expression, which was further recapitulated by a simple phase-vector model. Of note, coordination of day-time with night-time elements can modulate the extent of phase delay. A genetic complementation assay in Cry1~(-/-):Cry2 ~(-/-) cells revealed that substantial delay of Cry1 expression is required to restore circadian rhythmicity, and its prolonged delay slows circadian oscillation. Taken together, our data suggest that phase delay in Cry1 transcription is required for mammalian clock function.
机译:哺乳动物昼夜节律时钟中要求延迟抑制反馈的直接证据难以捉摸。 Cryptochrome 1(Cry1)是必不可少的时钟组件,显示晚上的表情,并在早上的元素(E框/ E'框)上起着强大的抑制作用。在这项研究中,我们揭示了Cry1近端启动子中的白天元素(D框)和其内含子增强子中的夜间元素(RRE)的组合产生了夜间表达。合成的复合启动子产生夜间表达,其通过简单的相载体模型进一步概括。值得注意的是,白天与夜间元素的协调可以调节相位延迟的程度。在Cry1〜(-/-):Cry2〜(-/-)细胞中进行的遗传互补分析表明,要恢复昼夜节律,Cry1表达需要大量延迟,而延长的延迟会延缓昼夜节律的振荡。两者合计,我们的数据表明Cry1转录的相位延迟是哺乳动物时钟功能所必需的。

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