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Circadian endocrine rhythms: thehypothalamic–pituitary–adrenal axis and its actions

机译:昼夜节律内分泌节律:下丘脑-垂体-肾上腺轴及其作用

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摘要

The stress system effectively restores the internal balance––or homeostasis––of living organisms in the face of random external or internal changes, the stressors. This highly complex system helps organisms to provide a series of neuroendocrine responses to stressors—the stress response—through coordinated activation of the hypothalamic–pituitary–adrenal (HPA) axis and the locus coeruleusorepinephrine (LC/NE) autonomic nervous systems. In addition to stressors, life is influenced by daily light/dark changes due to the 24-h rotation of Earth. To adjust to these recurrent dayight cycles, the biological clock system employs the heterodimer of transcription factors CLOCK/BMAL1, along with a set of other transcription factors, to regulate the circadian pattern of gene expression. Interestingly, the stress system, through the HPA axis, communicates with the clock system; therefore, any uncoupling or dysregulation could potentially cause several disorders, such as metabolic, autoimmune, and mood disorders. In this review, we discuss the biological function of the two systems, their interactions, and the clinical implications of their dysregulation or uncoupling.
机译:面对随机的外部或内部变化(压力源),压力系统有效地恢复了生物体的内部平衡(或稳态)。这个高度复杂的系统通过下丘脑-垂体-肾上腺(HPA)轴和蓝藻/去甲肾上腺素(LC / NE)自主神经系统的协调激活,帮助生物体对应激源提供一系列神经内分泌反应-应激反应。除压力源外,生命还受到地球24小时自转引起的每日明暗变化的影响。为了适应这些反复出现的昼/夜循环,生物钟系统采用了转录因子CLOCK / BMAL1的异二聚体,以及一组其他转录因子,来调节基因表达的昼夜节律。有趣的是,压力系统通过HPA轴与时钟系统通信。因此,任何解偶联或功能失调都可能导致多种疾病,例如代谢,自身免疫和情绪障碍。在这篇综述中,我们讨论了这两个系统的生物学功能,它们的相互作用以及它们失调或解偶联的临床意义。

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