Circadian gene transcription plays a role in cellular metabolism in hibernating brown bears, Ursus arctos.

IF 1.7 3区 生物学 Q4 PHYSIOLOGY Journal of Comparative Physiology B-Biochemical Systems and Environmental Physiology Pub Date : 2023-12-01 Epub Date: 2023-10-11 DOI:10.1007/s00360-023-01513-5
Ellery P Vincent, Blair W Perry, Joanna L Kelley, Charles T Robbins, Heiko T Jansen
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Abstract

Hibernation is a highly seasonal physiological adaptation that allows brown bears (Ursus arctos) to survive extended periods of low food availability. Similarly, daily or circadian rhythms conserve energy by coordinating body processes to optimally match the environmental light/dark cycle. Brown bears express circadian rhythms in vivo and their cells do in vitro throughout the year, suggesting that these rhythms may play important roles during periods of negative energy balance. Here, we use time-series analysis of RNA sequencing data and timed measurements of ATP production in adipose-derived fibroblasts from active and hibernation seasons under two temperature conditions to confirm that rhythmicity was present. Culture temperature matching that of hibernation body temperature (34 °C) resulted in a delay of daily peak ATP production in comparison with active season body temperatures (37 °C). The timing of peaks of mitochondrial gene transcription was altered as were the amplitudes of transcripts coding for enzymes of the electron transport chain. Additionally, we observed changes in mean expression and timing of key metabolic genes such as SIRT1 and AMPK which are linked to the circadian system and energy balance. The amplitudes of several circadian gene transcripts were also reduced. These results reveal a link between energy conservation and a functioning circadian system in hibernation.

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昼夜节律基因转录在冬眠棕熊的细胞代谢中发挥作用。
冬眠是一种高度季节性的生理适应,使棕熊(Ursus arctos)能够在食物供应不足的情况下长期生存。类似地,日常或昼夜节律通过协调身体过程以最佳匹配环境光/暗周期来保存能量。棕熊表达昼夜节律 体内 和 他们的细胞在体外 这表明这些节奏可能在负能量平衡时期发挥重要作用。在这里,我们使用RNA测序数据的时间序列分析和在两种温度条件下活动季节和冬眠季节脂肪来源成纤维细胞ATP产生的定时测量来证实节律性的存在。与活跃季节体温(37°C)相比,与冬眠体温(34°C)相匹配的培养温度导致每日ATP峰值产生延迟。线粒体基因转录峰值的时间发生了改变,编码电子传输链酶的转录物的振幅也发生了改变。此外,我们观察到与昼夜节律系统和能量平衡有关的SIRT1和AMPK等关键代谢基因的平均表达和时间变化。几个昼夜节律基因转录物的振幅也降低了。这些结果揭示了能量守恒与冬眠中正常工作的昼夜节律系统之间的联系。
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来源期刊
CiteScore
3.90
自引率
0.00%
发文量
51
审稿时长
3.5 months
期刊介绍: The Journal of Comparative Physiology B publishes peer-reviewed original articles and reviews on the comparative physiology of invertebrate and vertebrate animals. Special emphasis is placed on integrative studies that elucidate mechanisms at the whole-animal, organ, tissue, cellular and/or molecular levels. Review papers report on the current state of knowledge in an area of comparative physiology, and directions in which future research is needed.
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