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β-Adrenergic receptors control brown adipose UCP-1 tone and cold response without affecting its circadian rhythmicity

机译:β-肾上腺素能受体控制棕色脂肪UCP-1的音调和冷反应而不会影响其昼夜节律

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摘要

Brown adipose tissue (BAT) thermogenic functions are primarily mediated by uncoupling protein (UCP)-1. Ucp1 gene expression is highly induced by cold temperature, via sympathetic nervous system and β-adrenergic receptors (βARs). Ucp1 is also repressed by the clock gene Rev-erbα, contributing to its circadian rhythmicity. In this study, we investigated mice lacking βARs (β-less mice) to test the relationship between βAR signaling and the BAT molecular clock. We found that in addition to controlling the induction of Ucp1 and other key BAT genes at near freezing temperatures, βARs are essential for the basal expression of BAT Ucp1 at room temperature. Remarkably, although basal Ucp1 expression is low throughout day and night in β-less mice, the circadian rhythmicity of Ucp1 and clock genes in BAT is maintained. Thus, the requirement of βAR signaling for BAT activity is independent of the circadian rhythmicity of Ucp1 expression and circadian oscillation of the molecular clock genes. On the other hand, we found that βARs are essential for the normal circadian rhythms of locomotor activity. Our results demonstrate that in addition to controlling the BAT response to extreme cold, βAR signaling is necessary to maintain basal Ucp1 tone and to couple BAT circadian rhythmicity to the central clock.—Razzoli, M., Emmett, M. J., Lazar, M. A., Bartolomucci, A. β-Adrenergic receptors control brown adipose UCP-1 tone and cold response without affecting its circadian rhythmicity.
机译:棕色脂肪组织(BAT)的热生成功能主要由解偶联蛋白(UCP)-1介导。 Ucp1基因的表达在低温下通过交感神经系统和β-肾上腺素受体(βARs)高度诱导。 Ucp1还受到时钟基因Rev-erbα的抑制,这有助于其昼夜节律。在这项研究中,我们调查了缺少βARs的小鼠(无β小鼠)以测试βAR信号传导与BAT分子钟之间的关系。我们发现,除了在接近冰点的温度下控制Ucp1和其他关键BAT基因的诱导外,βARs对于室温下BAT Ucp1的基础表达也是必不可少的。值得注意的是,尽管在无β小鼠中白天整夜的基础Ucp1表达较低,但BAT中Ucp1的昼夜节律和时钟基因得以维持。因此,βAR信号对BAT活性的要求与Ucp1表达的昼夜节律和分子时钟基因的昼夜节律无关。另一方面,我们发现βAR对于运动活动的正常昼夜节律是必不可少的。我们的结果表明,除了控制BAT对极端寒冷的反应外,βAR信号传导对于维持基础Ucp1音调并将BAT昼夜节律与中央时钟耦合也是必要的。—Razzoli,M.,Emmett,MJ,Lazar,MA,Bartolomucci ,A.β-肾上腺素能受体控制棕色脂肪UCP-1的音调和寒冷反应,而不影响其昼夜节律。

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