首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Rev-erbα and Rev-erbβ coordinately protect the circadian clock and normal metabolic function
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Rev-erbα and Rev-erbβ coordinately protect the circadian clock and normal metabolic function

机译:Rev-erbα和Rev-erbβ协同保护昼夜节律和正常的代谢功能

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摘要

The nuclear receptor Rev-erba regulates circadian rhythm and metabolism, but its effects are modest and it has been considered to be a secondary regulator of the cell-autonomous clock. Here we report that depletion of Reverbα together with closely related Rev-erbβ has dramatic effects on the cell-autonomous clock as well as hepatic lipid metabolism. Mouse embryonic fibroblasts were rendered arrhythmic by depletion of both Rev-erbs. In mouse livers, Rev-erbβ mRNA and protein levels oscillate with a diurnal pattern similar to that of Rev-erbα, and both Rev-erbs are recruited to a remarkably similar set of binding sites across the genome, enriched near metabolic genes. Depletion of both Rev-erbs in liver synergistically derepresses several metabolic genes as well as genes that control the positive limb of the molecular clock. Moreover, deficiency of both Rev-erbs causes marked hepatic steatosis, in contrast to relatively subtle changes upon loss of either subtype alone. These findings establish the two Rev-erbs as major regulators of both clock function and metabolism, displaying a level of subtype collaboration that is unusual among nuclear receptors but common among core clock proteins, protecting the organism from major perturbations in circadian and metabolic physiology.
机译:核受体Rev-erba调节昼夜节律和新陈代谢,但其作用适中,已被认为是细胞自主时钟的次级调节剂。在这里,我们报告说,Reverbα的耗竭以及密切相关的Rev-erbβ对细胞自主时钟以及肝脂质代谢具有显着影响。两种Rev-erb的耗尽都会使小鼠胚胎成纤维细胞发生心律失常。在小鼠肝脏中,Rev-erbβmRNA和蛋白水平以类似于Rev-erbα的昼夜模式振荡,并且两个Rev-erbs都被募集到整个基因组中极为相似的结合位点,并富集在代谢基因附近。肝脏中两种Rev-erb的耗竭都协同抑制了一些代谢基因以及控制分子钟正肢的基因。此外,两种Rev-erbs的缺乏都会引起明显的肝脂肪变性,这与单独丢失任何一种亚型时的相对细微的变化形成对比。这些发现将这两个Rev-erbs确立为时钟功能和代谢的主要调节剂,显示出亚型协作水平在核受体之间并不常见,但在核心时钟蛋白之间却很常见,从而保护了生物免受昼夜节律和代谢生理的重大干扰。

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