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Role of Aryl Hydrocarbon Receptor in Circadian Clock Disruption and Metabolic Dysfunction

机译:芳烃受体在昼夜节律紊乱和代谢功能障碍中的作用

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The prevalence of metabolic syndrome, a clustering of three or more risk factors that include abdominal obesity, increased blood pressure, and high levels of glucose, triglycerides, and high-density lipoproteins, has reached dangerous and costly levels worldwide. Increases in morbidity and mortality result from a combination of factors that promote altered glucose metabolism, insulin resistance, and metabolic dysfunction. Although diet and exercise are commonly touted as important determinants in the development of metabolic dysfunction, other environmental factors, including circadian clock disruption and activation of the aryl hydrocarbon receptor (AhR) by dietary or other environmental sources, must also be considered. AhR binds a range of ligands, which prompts protein–protein interactions with other Per-Arnt-Sim (PAS)-domain-containing proteins and subsequent transcriptional activity. This review focuses on the reciprocal crosstalk between the activated AhR and the molecular circadian clock. AhR exhibits a rhythmic expression and time-dependent sensitivity to activation by AhR agonists. Conversely, AhR activation influences the amplitude and phase of expression of circadian clock genes, hormones, and the behavioral responses of the clock system to changes in environmental illumination. Both the clock and AhR status and activation play significant and underappreciated roles in metabolic homeostasis. This review highlights the state of knowledge regarding how AhR may act together with the circadian clock to influence energy metabolism. Understanding the variety of AhR-dependent mechanisms, including its interactions with the circadian timing system that promote metabolic dysfunction, reveals new targets of interest for maintenance of healthy metabolism.
机译:代谢综合症(包括腹部肥胖,血压升高以及高水平的葡萄糖,甘油三酸酯和高密度脂蛋白)的三个或更多危险因素聚集在一起,已在全球范围内达到危险且昂贵的水平。发病率和死亡率的增加是由多种因素共同导致的,这些因素促进了葡萄糖代谢,胰岛素抵抗和代谢功能异常的改变。尽管饮食和运动通常被认为是代谢机能障碍发展的重要决定因素,但也必须考虑其他环境因素,包括昼夜节律紊乱和饮食或其他环境来源对芳烃受体(AhR)的激活。 AhR与一系列配体结合,从而促使蛋白质与其他含Per-Arnt-Sim(PAS)域的蛋白质发生蛋白质相互作用,并随后产生转录活性。这项审查侧重于激活的AhR和分子生物钟之间的相互串扰。 AhR对AhR激动剂的激活表现出有规律的表达和时间依赖性。相反,AhR激活影响昼夜节律时钟基因,激素的表达幅度和相位,以及时钟系统对环境光照变化的行为响应。时钟,AhR状态和激活在代谢稳态中均起着重要且未被充分认识的作用。这篇评论重点介绍了有关AhR如何与生物钟共同作用以影响能量代谢的知识状态。了解各种依赖AhR的机制,包括其与促进代谢功能障碍的昼夜节律系统的相互作用,揭示了维持健康代谢的新目标。

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