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CLOCK-BMAL1 转录活性的破坏是芳香烃受体介导的 Period1 基因调控的原因。

Disruption of CLOCK-BMAL1 transcriptional activity is responsible for aryl hydrocarbon receptor-mediated regulation of Period1 gene.

机构信息

Department of Pharmacology, Southern Illinois University School of Medicine, Springfield, Illinois 62974-9629, USA.

出版信息

Toxicol Sci. 2010 May;115(1):98-108. doi: 10.1093/toxsci/kfq022. Epub 2010 Jan 27.

Abstract

The aryl hydrocarbon receptor (AhR) is a period-aryl hydrocarbon receptor nuclear transporter-simple minded domain transcription factor that shares structural similarity with circadian clock genes and readily interacts with components of the molecular clock. Activation of AhR by 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) alters behavioral circadian rhythms and represses the Period1 (Per1) gene in murine hematopoietic stem and progenitor cells. Per1 expression is driven by circadian locomotor activity cycles kaput-brain muscle ARNT-like (CLOCK-BMAL1)-dependent activation of Eboxes in the Per1 promoter. We hypothesized that the effects of AhR activation on the circadian clock are mediated by disruption of CLOCK-BMAL1 function and subsequent Per1 gene suppression. Effects of AhR activation on rhythmic Per1 transcripts were examined in livers of mice after treatment with the AhR agonist, TCDD; the molecular mechanisms of Per1 repression by AhR were determined in hepatoma cells using TCDD and beta-napthoflavone as AhR activators. This study reports, for the first time, that AhR activation by TCDD alters the Per1 rhythm in the mouse liver and that Per1 gene suppression depends upon the presence of AhR. Furthermore, AhR interaction with BMAL1 attenuates CLOCK-BMAL1 activity and decreases CLOCK binding at Ebox1 and Ebox3 in the Per1 promoter. Taken together, these data suggest that AhR activation represses Per1 through disrupting CLOCK-BMAL1 activity, producing dysregulation of rhythmic Per1 gene expression. These data define alteration of the Per1 rhythm as novel signaling events downstream of AhR activation. Downregulation of Per1 could contribute to metabolic disease, cancer, and other detrimental effects resulting from exposure to certain environmental pollutants.

摘要

芳香烃受体(AhR)是一种周期芳香烃受体核转运-简单的思维域转录因子,与生物钟基因具有结构相似性,并易于与分子钟的组成部分相互作用。2,3,7,8-四氯二苯并-p-二恶英(TCDD)激活 AhR 会改变行为性昼夜节律,并抑制小鼠造血干细胞和祖细胞中的 Period1(Per1)基因。Per1 的表达受生物钟运动活动周期驱动,kaput-brain muscle ARNT-like(CLOCK-BMAL1)依赖性激活 Per1 启动子中的 Eboxes。我们假设 AhR 激活对生物钟的影响是通过破坏 CLOCK-BMAL1 功能和随后的 Per1 基因抑制来介导的。在用 AhR 激动剂 TCDD 处理后,在小鼠肝脏中检查 AhR 激活对节律性 Per1 转录物的影响;使用 TCDD 和β-萘黄酮作为 AhR 激活剂,在肝癌细胞中确定 AhR 对 Per1 基因抑制的分子机制。本研究首次报道,TCDD 激活 AhR 会改变小鼠肝脏中的 Per1 节律,并且 Per1 基因抑制依赖于 AhR 的存在。此外,AhR 与 BMAL1 的相互作用减弱了 CLOCK-BMAL1 的活性,并减少了 CLOCK 在 Per1 启动子的 Ebox1 和 Ebox3 上的结合。总之,这些数据表明,AhR 激活通过破坏 CLOCK-BMAL1 活性来抑制 Per1,导致节律性 Per1 基因表达失调。这些数据定义了 Per1 节律的改变作为 AhR 激活下游的新型信号事件。Per1 的下调可能导致代谢性疾病、癌症和其他由于暴露于某些环境污染物而产生的有害影响。

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