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Hepatic c-Jun regulates glucose metabolism via FGF21 and modulates body temperature through the neural signals

机译:肝C-Jun通过FGF21调节葡萄糖代谢,并通过神经信号调节体温

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摘要

Objective: c-Jun, a prominent member of the activator protein 1 (AP-1) family, is involved in various physiology processes such as cell death and survival. However, a role of hepatic c-Jun in the whole-body metabolism is poorly understood. Methods: We generated liver-specific c-Jun knock-out (c-jun△li) mice to investigate the effect of hepatic c-Jun on the whole-body physiology, particularly in blood glucose and body temperature. Primary hepatocytes were also used to explore a direct regulation of c-Jun in gluconeogenesis. Results: c-jun△li mice showed higher hepatic gluconeogenic capacity compared with control mice, and similar results were obtained in vitro. In addition, fibroblast growth factor 21 (FGF21) expression was directly inhibited by c-Jun knockdown and adenovirus-mediated hepatic FGF21 over-expression blocked the effect of c-Jun on gluconeogenesis in c-jun△li mice. Interestingly, c-jun△li mice also exhibited higher body temperature, with induced thermogenesis and uncoupling protein 1 (UCP1) expression in brown adipose tissue (BAT). Furthermore, the body temperature became comparable between c-jun△li and control mice at thermoneutral temperature (30 °C). Moreover, the activity of sympathetic nervous system (SNS) was increased in c-jun△li mice and the higher body temperature was inhibited by beta-adrenergic receptor blocker injection. Finally, the activated SNS and increased body temperature in c-jun△li mice was most likely caused by the signals from the brain and hepatic vagus nerve, as the expression of c-Fos (the molecular marker of neuronal activation) was changed in several brain areas controlling body temperature and body temperature was decreased by selective hepatic vagotomy. Conclusions: These data demonstrate a novel function of hepatic c-Jun in the regulation of gluconeogenesis and body temperature via FGF21 and neural signals. Our results also provide novel insights into the organ crosstalk in the regulation of the whole-body physiology. Keywords: Gluconeogenesis, Temperature, Organ crosstalk
机译:目的:C-Jun,激活蛋白1(AP-1)家族的突出成员,参与各种生理过程,如细胞死亡和生存。然而,肝C-jun在全身代谢中的作用很差。方法:我们生成肝脏C-Jun淘汰(C-JunⅥLi)小鼠,探讨肝C-Jun对全身生理学的影响,特别是血糖和体温。原发性肝细胞也用于探讨葡糖生成中C-JUM的直接调节。结果:C-Jun△LI小鼠与对照小鼠相比,肝葡糖原容量较高,并在体外获得类似的结果。此外,成纤维细胞生长因子21(FGF21)表达被C-Jun敲低,腺病毒介导的肝FGF21过度表达阻断C-Jun在C-Jun Z锂小鼠中的C-Jun对C-Jun的作用。有趣的是,C-JUM△李小鼠还表现出更高的体温,诱导的热生成和棕色脂肪组织(BAT)中的蛋白质1(UCP1)表达。此外,体温在C-Jun△LI之间变得可比,在热管温度(30℃)下对照小鼠进行。此外,在C-Jun△LI小鼠中增加了交感神经系统(SNS)的活性,并且通过β-肾上腺素能受体阻滞剂注射抑制了较高的体温。最后,在C-Jun〗李小小鼠中活化的Sns和体温增加最有可能由来自大脑和肝迷走神经的信号引起的,因为C-FOS的表达(神经元激活的分子标记)在几个时变化通过选择性肝脏迷走术,控制体温和体温的脑区域减少。结论:这些数据证明了通过FGF21和神经信号调节葡糖生成和体温的肝C-Jun的新功能。我们的结果还提供了在整个身体生理学监管中的器官串扰中的新颖见解。关键词:葡糖生成,温度,器官串扰

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