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Redundant Function of REV-ERBα and β and Non-Essential Role for Bmal1 Cycling in Transcriptional Regulation of Intracellular Circadian Rhythms

机译:REV-ERBα和β的冗余功能以及Bmal1循环在细胞内昼夜节律的转录调节中的重要作用

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摘要

The mammalian circadian clockwork is composed of a core PER/CRY feedback loop and additional interlocking loops. In particular, the ROR/REV/Bmal1 loop, consisting of ROR activators and REV-ERB repressors that regulate Bmal1 expression, is thought to “stabilize” core clock function. However, due to functional redundancy and pleiotropic effects of gene deletions, the role of the ROR/REV/Bmal1 loop has not been accurately defined. In this study, we examined cell-autonomous circadian oscillations using combined gene knockout and RNA interference and demonstrated that REV-ERBα and β are functionally redundant and are required for rhythmic Bmal1 expression. In contrast, the RORs contribute to Bmal1 amplitude but are dispensable for Bmal1 rhythm. We provide direct in vivo genetic evidence that the REV-ERBs also participate in combinatorial regulation of Cry1 and Rorc expression, leading to their phase-delay relative to Rev-erbα. Thus, the REV-ERBs play a more prominent role than the RORs in the basic clock mechanism. The cellular genetic approach permitted testing of the robustness of the intracellular core clock function. We showed that cells deficient in both REV-ERBα and β function, or those expressing constitutive BMAL1, were still able to generate and maintain normal Per2 rhythmicity. Our findings thus underscore the resilience of the intracellular clock mechanism and provide important insights into the transcriptional topologies underlying the circadian clock. Since REV-ERB function and Bmal1 mRNA/protein cycling are not necessary for basic clock function, we propose that the major role of the ROR/REV/Bmal1 loop and its constituents is to control rhythmic transcription of clock output genes.
机译:哺乳动物的生物钟由一个核心的PER / CRY反馈回路和其他互锁回路组成。尤其是,由ROR / REV / Bmal1回路(由调节Bmal1表达的ROR激活剂和REV-ERB阻遏物组成)认为可以“稳定”核心时钟功能。但是,由于功能冗余和基因缺失的多效性效应,ROR / REV / Bmal1环的作用尚未得到准确定义。在这项研究中,我们使用组合的基因敲除和RNA干扰检查了细胞自主的昼夜节律振荡,并证明REV-ERBα和β在功能上是多余的,是节奏性Bmal1表达所必需的。相反,ROR有助于Bmal1振幅,但对于Bmal1节奏是必不可少的。我们提供直接的体内遗传学证据,证明REV-ERBs也参与Cry1和Rorc表达的组合调节,导致其相对于Rev-erbα的相位延迟。因此,在基本时钟机制中,REV-ERB比ROR扮演更重要的角色。细胞遗传学方法允许测试细胞内核心时钟功能的鲁棒性。我们发现缺乏REV-ERBα和β功能的细胞,或表达组成型BMAL1的细胞仍能够产生并维持正常的Per2节律。因此,我们的发现强调了细胞内时钟机制的弹性,并提供了对昼夜节律潜在的转录拓扑结构的重要见解。由于基本时钟功能不需要REV-ERB功能和Bmal1 mRNA /蛋白质循环,因此我们建议ROR / REV / Bmal1环及其组成部分的主要作用是控制时钟输出基因的节律转录。

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