Nakamaru Erina, Seki Kota, Shirahata Yuiho, Adachi Megumi, Sakabe Nene, Matsuo Takuya, Tsukamoto Daisuke, Takamatsu Nobuhiko
Laboratory of Molecular Biology, Department of Biosciences, School of Science, Kitasato University, 1-15-1 Kitazato, Minami-ku, Sagamihara-shi, Kanagawa, 252-0373, Japan.
Sci Rep. 2025 Feb 13;15(1):4403. doi: 10.1038/s41598-025-87299-8.
Circadian rhythms play an important role in many physiological processes. We have previously reported that no periodic fluctuation in the Bmal1 mRNA is observed in the liver of the chipmunk, a mammalian hibernator, in the hibernation season, suggesting that peripheral circadian clocks are not functional during hibernation. In contrast, the Per2 mRNA levels are transiently increased by elevated body temperature during interbout arousal and showed periodic fluctuations in the hibernation season, suggesting that periodic expression of the Per2 mRNA may be restored during interbout arousal. In the present study, we analyzed Per1 gene expression in the chipmunk liver. The Per1 mRNA showed circadian fluctuations with a peak during the late sleep period in the non-hibernation season and periodic fluctuations with a peak during the early interbout arousal in the hibernation season. In both the non-hibernation and hibernation seasons, Per1 gene expression was phase-advanced relative to Per2 gene expression, and the phase relationship between the two genes was maintained, suggesting that for some genes, periodic gene expression, similar to circadian expression in the non-hibernation season, may be restored during interbout arousal. Interestingly, Per1 gene transcription was differentially activated by BMAL1 in the non-hibernation season and possibly by CREB1 in the hibernation season.
昼夜节律在许多生理过程中发挥着重要作用。我们之前报道过,在冬眠季节,作为哺乳动物冬眠者的花栗鼠肝脏中未观察到Bmal1 mRNA的周期性波动,这表明外周生物钟在冬眠期间不起作用。相比之下,在间歇性觉醒期间,Per2 mRNA水平会因体温升高而短暂增加,并且在冬眠季节呈现出周期性波动,这表明Per2 mRNA的周期性表达可能在间歇性觉醒期间得以恢复。在本研究中,我们分析了花栗鼠肝脏中Per1基因的表达情况。Per1 mRNA在非冬眠季节的睡眠后期出现昼夜波动并达到峰值,在冬眠季节的间歇性觉醒早期出现周期性波动并达到峰值。在非冬眠和冬眠季节,Per1基因表达均相对于Per2基因表达相位提前,并且这两个基因之间的相位关系得以维持,这表明对于某些基因而言,类似于非冬眠季节的昼夜节律表达的周期性基因表达可能在间歇性觉醒期间得以恢复。有趣的是,在非冬眠季节,Per1基因转录受到BMAL1的差异性激活,而在冬眠季节可能受到CREB1的激活。