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Glucagon-induced acetylation of Foxa2 regulates hepatic lipid metabolism

机译:胰高血糖素诱导的Foxa2乙酰化调节肝脂质代谢

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Circulating levels of insulin and glucagon reflect the nutritional state of animals and elicit regulatory responses in the liver that maintain glucose and lipid homeostasis. The transcription factor Foxa2 activates lipid metabolism and ketogenesis during fasting and is inhibited via insulin-PI3K-Akt signaling-mediated phosphorylation at Thr156 and nuclear exclusion. Here we show that, in addition, Foxa2 is acetylated at the conserved residue Lys259 following inhibition of histone deacetylases (HDACs) class I-III and the cofactors p300 and SirT1 are involved in Foxa2 acetylation and deacetylation, respectively. Physiologically, fasting states and glucagon stimulation are sufficient to induce Foxa2 acetylation. Introduction of the acetylation- mimicking (K259Q) or -deficient (K259R) mutations promotes or inhibits Foxa2 activity, respectively, and adenoviral expression of Foxa2-K259Q augments expression of genes involved in fatty acid oxidation and ketogenesis. Our study reveals a molecular mechanism by which glucagon signaling activates a fasting response through acetylation of Foxa2.
机译:胰岛素和胰高血糖素的循环水平反映了动物的营养状况,并在肝脏中引起维持葡萄糖和脂质稳态的调节反应。转录因子Foxa2在禁食期间激活脂质代谢和生酮,并通过胰岛素PI3K-Akt信号转导的Thr156磷酸化和核排斥而被抑制。在这里,我们显示,此外,在抑制组蛋白脱乙酰基酶(HDACs)I-III类后,Foxa2在保守残基Lys259上被乙酰化,辅因子p300和SirT1分别参与Foxa2乙酰化和脱乙酰基作用。在生理上,禁食状态和胰高血糖素刺激足以诱导Foxa2乙酰化。模拟乙酰化(K259Q)或缺陷(K259R)突变的引入分别促进或抑制Foxa2活性,Foxa2-K259Q的腺病毒表达增强了涉及脂肪酸氧化和生酮作用的基因的表达。我们的研究揭示了胰高血糖素信号传导通过Foxa2的乙酰化激活空腹反应的分子机制。

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