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Chromatin recruitment of activated AMPK drives fasting response genes co-controlled by GR and PPARα

机译:活化AMPK的染色质募集驱动由GR和PPARα共同控制的禁食反应基因

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摘要

Adaptation to fasting involves both Glucocorticoid Receptor (GRα) and Peroxisome Proliferator-Activated Receptor α (PPARα) activation. Given both receptors can physically interact we investigated the possibility of a genome-wide cross-talk between activated GR and PPARα, using ChIP- and RNA-seq in primary hepatocytes. Our data reveal extensive chromatin co-localization of both factors with cooperative induction of genes controlling lipid/glucose metabolism. Key GR/PPAR co-controlled genes switched from transcriptional antagonism to cooperativity when moving from short to prolonged hepatocyte fasting, a phenomenon coinciding with gene promoter recruitment of phosphorylated AMP-activated protein kinase (AMPK) and blocked by its pharmacological inhibition. In vitro interaction studies support trimeric complex formation between GR, PPARα and phospho-AMPK. Long-term fasting in mice showed enhanced phosphorylation of liver AMPK and GRα Ser211. Phospho-AMPK chromatin recruitment at liver target genes, observed upon prolonged fasting in mice, is dampened by refeeding. Taken together, our results identify phospho-AMPK as a molecular switch able to cooperate with nuclear receptors at the chromatin level and reveal a novel adaptation mechanism to prolonged fasting.
机译:对禁食的适应涉及糖皮质激素受体(GRα)和过氧化物酶体增殖物激活受体α(PPARα)的激活。考虑到两种受体都可以物理相互作用,我们使用原代肝细胞中的ChIP和RNA序列研究了活化GR和PPARα之间全基因组串扰的可能性。我们的数据揭示了这两个因素的广泛染色质共定位以及控制脂质/葡萄糖代谢的基因的协同诱导。关键的GR / PPAR共同控制基因在从短时间空腹转移到长时间肝空腹时,从转录拮抗作用转变为协同作用,这种现象与磷酸化AMP激活的蛋白激酶(AMPK)的基因启动子募集并重,并且被其药理抑制所阻断。体外相互作用研究支持GR,PPARα和磷酸AMPK之间形成三聚体复合物。小鼠长期禁食显示肝脏AMPK和GRαSer211的磷酸化增强。在小鼠长期禁食时观察到,肝脏靶基因处的磷酸-AMPK染色质募集会因重新喂养而受到抑制。综上所述,我们的研究结果确定磷酸AMPK是能够与染色质水平的核受体协同作用的分子开关,并揭示了延长禁食的新型适应机制。

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