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生物钟细胞器:全尺度的节律。

Circadian Organelles: Rhythms at All Scales.

机构信息

Department of Biomolecular Sciences, Weizmann Institute of Science, Rehovot 7610001, Israel.

出版信息

Cells. 2021 Sep 16;10(9):2447. doi: 10.3390/cells10092447.

Abstract

Circadian clocks have evolved in most light-sensitive organisms, from unicellular organisms to mammals. Consequently, a myriad of biological functions exhibits circadian rhythmicity, from behavior to physiology, through tissue and cellular functions to subcellular processes. Circadian rhythms in intracellular organelles are an emerging and exciting research arena. We summarize herein the current literature for rhythmicity in major intracellular organelles in mammals. These include changes in the morphology, content, and functions of different intracellular organelles. While these data highlight the presence of rhythmicity in these organelles, a gap remains in our knowledge regarding the underlying molecular mechanisms and their functional significance. Finally, we discuss the importance and challenges faced by spatio-temporal studies on these organelles and speculate on the presence of oscillators in organelles and their potential mode of communication. As circadian biology has been and continues to be studied throughout temporal and spatial axes, circadian organelles appear to be the next frontier.

摘要

生物钟在大多数对光敏感的生物体中进化,从单细胞生物到哺乳动物。因此,从行为到生理,从组织和细胞功能到亚细胞过程,无数的生物学功能都表现出昼夜节律。细胞内细胞器的昼夜节律是一个新兴的令人兴奋的研究领域。我们在此总结了哺乳动物主要细胞内细胞器节律性的现有文献。这些变化包括不同细胞器的形态、内容和功能的变化。虽然这些数据突出了这些细胞器中存在节律性,但我们对其潜在的分子机制及其功能意义的了解仍存在差距。最后,我们讨论了对这些细胞器进行时空研究的重要性和面临的挑战,并推测细胞器中是否存在振荡器及其潜在的通讯方式。由于昼夜生物学已经并将继续在时间和空间轴上进行研究,昼夜细胞器似乎是下一个前沿。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d32/8469338/7c86931f17de/cells-10-02447-g001.jpg

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