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Opposing actions of Per1 and Cry2 in the regulation of Per1 target gene expression in the liver and kidney

机译:Per1和Cry2在肝脏和肾脏中Per1靶基因表达调控中的相反作用

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摘要

Mounting evidence suggests that the circadian clock plays an integral role in the regulation of many physiological processes including blood pressure, renal function, and metabolism. The canonical molecular clock functions via activation of circadian target genes by Clock/Bmal1 and repression of Clock/Bmal1 activity by Per1–3 and Cry1/2. However, we have previously shown that Per1 activates genes important for renal sodium reabsorption, which contradicts the canonical role of Per1 as a repressor. Moreover, Per1 knockout (KO) mice exhibit a lowered blood pressure and heavier body weight phenotype similar to Clock KO mice, and opposite that of Cry1/2 KO mice. Recent work has highlighted the potential role of Per1 in repression of Cry2. Therefore, we postulated that Per1 potentially activates target genes through a Cry2-Clock/Bmal1-dependent mechanism, in which Per1 antagonizes Cry2, preventing its repression of Clock/Bmal1. This hypothesis was tested in vitro and in vivo. The Per1 target genes αENaC and Fxyd5 were identified as Clock targets in mpkCCDc14 cells, a model of the renal cortical collecting duct. We identified PPARα and DEC1 as novel Per1 targets in the mouse hepatocyte cell line, AML12, and in the liver in vivo. Per1 knockdown resulted in upregulation of Cry2 in vitro, and this result was confirmed in vivo in mice with reduced expression of Per1. Importantly, siRNA-mediated knockdown of Cry2 and Per1 demonstrated opposing actions for Cry2 and Per1 on Per1 target genes, supporting the potential Cry2-Clock/Bmal1-dependent mechanism underlying Per1 action in the liver and kidney.
机译:越来越多的证据表明,生物钟在调节许多生理过程(包括血压,肾功能和新陈代谢)中起着不可或缺的作用。规范分子时钟的功能是通过Clock / Bmal1激活昼夜节律靶基因,并通过Per1-3和Cry1 / 2抑制Clock / Bmal1活性。但是,我们以前已经证明Per1激活了对肾钠重吸收重要的基因,这与Per1作为阻遏物的规范作用相矛盾。此外,与Clock KO小鼠相似,Per1基因敲除(KO)小鼠表现出较低的血压和较重的体重表型,与Cry1 / 2 KO小鼠相反。最近的工作强调了Per1在抑制Cry2中的潜在作用。因此,我们推测Per1可能通过Cry2-Clock / Bmal1依赖性机制激活靶基因,其中Per1拮抗Cry2,阻止其抑制Clock / Bmal1。在体外和体内测试了该假设。 Per1靶基因αENaC和Fxyd5被鉴定为mpkCCDc14细胞(肾皮质收集管的模型)中的Clock靶。我们将PPARα和DEC1确定为小鼠肝细胞系AML12和体内肝脏中的新型Per1靶标。 Per1敲低导致体外Cry2上调,并且在体内Per1表达降低的小鼠中证实了这一结果。重要的是,siRNA介导的Cry2和Per1的敲低证明了Cry2和Per1对Per1目标基因的相反作用,支持了Per1作用在肝脏和肾脏中潜在的Cry2-Clock / Bmal1依赖性机制。

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