Chronobiology Laboratory, School of Biology, Indian Institute of Science Education and Research (IISER) , Thiruvananthapuram, India.
Chronobiol Int. 2021 Feb;38(2):149-167. doi: 10.1080/07420528.2020.1842436. Epub 2020 Dec 20.
In most organisms ranging from cyanobacteria to humans, the endogenous timekeeping system temporally coordinates the behavioral, physiological, and metabolic processes with a periodicity close to 24 h. The timing of these daily rhythms is orchestrated by the synchronized oscillations of both the central pacemaker in the brain and the peripheral clocks located across multiple organs and tissues. A growing body of evidence suggests that the central circadian clock and peripheral clocks residing in the metabolically active tissues are incredibly well coordinated to confer coherent metabolic homeostasis. The interplay between nutrient metabolism and circadian rhythms can occur at various levels supported by the molecular clock network, multiple systemic mechanisms, and the neuroendocrine signaling pathways. While studies suggest the reciprocal regulation between circadian clock and metabolism, it is important to understand the precise mechanisms and the underlying pathways involved in the cross-talk among circadian oscillators and diverse metabolic networks. In addition to the internal synchronization of the metabolic rhythms, feeding time is considered as a potential external synchronization cue that fine tunes the timing of the circadian rhythms in metabolic peripheral clocks. A deeper understanding of how the timing of food intake and the diet composition drive the tissue-specific metabolic rhythms across the body is concomitantly important to develop novel therapeutic strategies for the metabolic disorders arising from circadian misalignment. This review summarizes the recent advancements in the circadian clock regulation of nutrient metabolism and discusses the current understanding of the metabolic feedback signals that link energy metabolism with the circadian clock.
在从蓝藻到人类的大多数生物体中,内源性计时系统将行为、生理和代谢过程与接近 24 小时的周期性时间协调起来。这些日常节律的时间安排是由大脑中央起搏器和分布在多个器官和组织中的外围时钟的同步振荡来协调的。越来越多的证据表明,中央生物钟和位于代谢活跃组织中的外围时钟之间的协调非常好,以赋予一致的代谢稳态。营养代谢和昼夜节律之间的相互作用可以在分子时钟网络、多个系统机制和神经内分泌信号通路所支持的不同水平上发生。虽然研究表明昼夜节律钟和代谢之间存在相互调节,但了解昼夜振荡器和不同代谢网络之间相互作用的精确机制和潜在途径非常重要。除了代谢节律的内部同步外,进食时间被认为是精细调节代谢外周时钟昼夜节律时间的潜在外部同步提示。深入了解食物摄入的时间和饮食成分如何驱动全身组织特异性代谢节律,对于开发源自昼夜节律失调的代谢紊乱的新型治疗策略具有重要意义。本文综述了昼夜节律钟对营养代谢的调控的最新进展,并讨论了将能量代谢与昼夜节律钟联系起来的代谢反馈信号的当前认识。