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Coupled network of the circadian clocks: a driving force of rhythmic physiology

机译:昼夜钟表的耦合网络:节奏生理学的驱动力

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The circadian system is composed of coupled endogenous oscillators that allow living beings, including humans, to anticipate and adapt to daily changes in their environment. In mammals, circadian clocks form a hierarchically organized network with a ‘master clock’ located in the suprachiasmatic nucleus of the hypothalamus, which ensures entrainment of subsidiary oscillators to environmental cycles. Robust rhythmicity of body clocks is indispensable for temporally coordinating organ functions, and the disruption or misalignment of circadian rhythms caused for instance by modern lifestyle is strongly associated with various widespread diseases. This review aims to provide a comprehensive overview of our current knowledge about the molecular architecture and system‐level organization of mammalian circadian oscillators. Furthermore, we discuss the regulatory roles of peripheral clocks for cell and organ physiology and their implication in the temporal coordination of metabolism in human health and disease. Finally, we summarize methods for assessing circadian rhythmicity in humans.
机译:昼夜节约系统由耦合的内源振荡器组成,允许生活在内的生活,以预期和适应其环境的日常变化。在哺乳动物中,昼夜节点形成分层组织的网络,该网络具有位于下丘脑的Suprachiasmatic核中的“主时钟”,确保了辅助振荡器纳入环境周期。身体时钟的鲁棒性节律对于暂时协调器官功能是必不可少的,例如通过现代生活方式引起的昼夜节律的破坏或未对准与各种广泛的疾病密切相关。该审查旨在全面概述我们目前关于哺乳动物昼夜振荡器的分子建筑和系统级组织的知识。此外,我们讨论了细胞和器官生理学外周期时钟的调节作用及其在人类健康和疾病中新陈代谢的时间协调中的含义。最后,我们总结了评估人类昼夜节律的方法。

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