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A Molecular Clock Regulates Angiopoietin-Like Protein 2 Expression

机译:分子时钟调节血管生成素样蛋白2的表达。

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摘要

Various physiological and behavioral processes exhibit circadian rhythmicity. These rhythms are usually maintained by negative feedback loops of core clock genes, namely, CLOCK, BMAL, PER, and CRY. Recently, dysfunction in the circadian clock has been recognized as an important foundation for the pathophysiology of lifestyle-related diseases, such as obesity, cardiovascular disease, and some cancers. We have reported that angiopoietin-like protein 2 (ANGPTL2) contributes to the pathogenesis of these lifestyle-related diseases by inducing chronic inflammation. However, molecular mechanisms underlying regulation of ANGPTL2 expression are poorly understood. Here, we assess circadian rhythmicity of ANGPTL2 expression in various mouse tissues. We observed that ANGPTL2 rhythmicity was similar to that of the PER2 gene, which is regulated by the CLOCK/BMAL1 complex. Promoter activity of the human ANGPTL2 gene was significantly induced by CLOCK and BMAL1, an induction markedly attenuated by CRY co-expression. We also identified functional E-boxes in the ANGPTL2 promoter and observed occupancy of these sites by endogenous CLOCK in human osteosarcoma cells. Furthermore, Cry-deficient mice exhibited arrhythmic Angptl2 expression. Taken together, these data suggest that periodic expression of ANGPTL2 is regulated by a molecular clock.
机译:各种生理和行为过程表现出昼夜节律。这些节奏通常由核心时钟基因的负反馈回路(即CLOCK,BMAL,PER和CRY)保持。最近,昼夜节律障碍已被认为是与生活方式有关的疾病,例如肥胖,心血管疾病和某些癌症的病理生理学的重要基础。我们已经报道,血管生成素样蛋白2(ANGPTL2)通过诱导慢性炎症而促成这些与生活方式有关的疾病的发病机理。但是,对ANGPTL2表达调控的分子机制了解甚少。在这里,我们评估在各种小鼠组织中ANGPTL2表达的昼夜节律。我们观察到,ANGPTL2的节律性与PER2基因的节律性相似,后者受CLOCK / BMAL1复合物调节。 CLOCK和BMAL1显着诱导了人ANGPTL2基因的启动子活性,而CRY共表达显着减弱了该诱导。我们还确定了ANGPTL2启动子中的功能性E-boxes,并观察了人骨肉瘤细胞中内源性CLOCK对这些位点的占用。此外,Cry缺陷小鼠表现出心律不齐Angptl2表达。综上所述,这些数据表明ANGPTL2的周期表达受分子时钟调控。

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