每2
昼夜节律
生物钟
细菌昼夜节律
生物
转录组
时钟
句号(音乐)
光对昼夜节律的影响
外围设备
细胞生物学
夹带(生物音乐学)
每1
内分泌学
视交叉上核
同步(交流)
内科学
节奏
神经科学
时间生物学
基因表达
基因
遗传学
医学
物理
声学
作者
Onelia Gagliano,Camilla Luni,Yan Li,Silvia Angiolillo,Wei Qin,Francesco Panariello,Davide Cacchiarelli,Joseph S. Takahashi,Nicola Elvassore
标识
DOI:10.1038/s41467-021-26294-9
摘要
The circadian system cyclically regulates many physiological and behavioral processes within the day. Desynchronization between physiological and behavioral rhythms increases the risk of developing some, including metabolic, disorders. Here we investigate how the oscillatory nature of metabolic signals, resembling feeding-fasting cycles, sustains the cell-autonomous clock in peripheral tissues. By controlling the timing, period and frequency of glucose and insulin signals via microfluidics, we find a strong effect on Per2::Luc fibroblasts entrainment. We show that the circadian Per2 expression is better sustained via a 24 h period and 12 h:12 h frequency-encoded metabolic stimulation applied for 3 daily cycles, aligned to the cell-autonomous clock, entraining the expression of hundreds of genes mostly belonging to circadian rhythms and cell cycle pathways. On the contrary misaligned feeding-fasting cycles synchronize and amplify the expression of extracellular matrix-associated genes, aligned during the light phase. This study underlines the role of the synchronicity between life-style-associated metabolic signals and peripheral clocks on the circadian entrainment.
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