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Glycogen shortage during fasting triggers liver-brain-adipose neurocircuitry to facilitate fat utilization

机译:禁食期间糖原缺乏会触发肝脑脂肪神经回路,促进脂肪利用

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During fasting, animals maintain their energy balance by shifting their energy source from carbohydrates to triglycerides. However, the trigger for this switch has not yet been entirely elucidated. Here we show that a selective hepatic vagotomy slows the speed of fat consumption by attenuating sympathetic nerve-mediated lipolysis in adipose tissue. Hepatic glycogen pre-loading by the adenoviral overexpression of glycogen synthase or the transcription factor TFE3 abolished this liver-brain-adipose axis activation. Moreover, the blockade of glycolysis through the knockdown of the glycogen phosphorylase gene and the resulting elevation in the glycogen content abolished the lipolytic signal from the liver, indicating that glycogen is the key to triggering this neurocircuitry. These results demonstrate that liver glycogen shortage activates a liver-brain-adipose neural axis that has an important role in switching the fuel source from glycogen to triglycerides under prolonged fasting conditions.RI Yahagi, Naoya/D-2360-2014; Kataoka, Kazunori/K-7108-2012OI Yahagi, Naoya/0000-0002-1823-1865; Kataoka, Kazunori/0000-0002-8591-413X
机译:禁食期间,动物通过将能量源从碳水化合物转移到甘油三酸酯来保持能量平衡。但是,此开关的触发尚未完全阐明。在这里,我们显示选择性肝迷走神经切断术通过减弱脂肪组织中交感神经介导的脂解作用来减慢脂肪消耗的速度。肝糖原通过腺病毒过表达糖原合酶或转录因子TFE3的预载而消除了这种肝脑脂肪轴的激活。而且,通过糖原磷酸化酶基因的敲低来阻止糖酵解,糖原含量的增加也消除了来自肝脏的脂解信号,表明糖原是触发该神经回路的关键。这些结果表明,肝糖原缺乏会激活肝脑脂肪神经轴,在长期禁食条件下,将燃料源从糖原转换为甘油三酸酯具有重要作用。RIYahagi,Naoya / D-2360-2014; Kazunori Kataoka / K-7108-2012OI Yahagi,Naoya / 0000-0002-1823-1865;和服Kataoka / 0000-0002-8591-413X

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