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Metformin interferes with bile acid homeostasis through AMPK-FXR crosstalk

机译:二甲双胍通过AMPK-FXR串扰干扰胆汁酸稳态

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摘要

The nuclear bile acid receptor farnesoid X receptor (FXR) is an important transcriptional regulator of bile acid, lipid, and glucose metabolism. FXR is highly expressed in the liver and intestine and controls the synthesis and enterohepatic circulation of bile acids. However, little is known about FXR-associated proteins that contribute to metabolic regulation. Here, we performed a mass spectrometry–based search for FXR-interacting proteins in human hepatoma cells and identified AMPK as a coregulator of FXR. FXR interacted with the nutrient-sensitive kinase AMPK in the cytoplasm of target cells and was phosphorylated in its hinge domain. In cultured human and murine hepatocytes and enterocytes, pharmacological activation of AMPK inhibited FXR transcriptional activity and prevented FXR coactivator recruitment to promoters of FXR-regulated genes. Furthermore, treatment with AMPK activators, including the antidiabetic biguanide metformin, inhibited FXR agonist induction of FXR target genes in mouse liver and intestine. In a mouse model of intrahepatic cholestasis, metformin treatment induced FXR phosphorylation, perturbed bile acid homeostasis, and worsened liver injury. Together, our data indicate that AMPK directly phosphorylates and regulates FXR transcriptional activity to precipitate liver injury under conditions favoring cholestasis.
机译:核胆汁酸受体法呢类X受体(FXR)是胆汁酸,脂质和葡萄糖代谢的重要转录调节因子。 FXR在肝和肠中高表达,并控制胆汁酸的合成和肝肠循环。然而,关于与FXR相关的蛋白质有助于代谢调节的了解甚少。在这里,我们进行了基于质谱的人肝癌细胞中与FXR相互作用蛋白的搜索,并将AMPK确定为FXR的核心调节剂。 FXR在靶细胞的细胞质中与营养敏感激酶AMPK相互作用,并在其铰链区被磷酸化。在培养的人和鼠肝细胞和肠上皮细胞中,AMPK的药理激活抑制了FXR转录活性,并阻止了FXR共激活子募集到FXR调控基因的启动子中。此外,用AMPK激活剂(包括抗糖尿病双胍二甲双胍)进行的治疗抑制了小鼠肝脏和肠道中FXR靶基因的FXR激动剂诱导。在肝内胆汁淤积的小鼠模型中,二甲双胍治疗可引起FXR磷酸化,胆汁酸稳态紊乱和肝损伤加重。总之,我们的数据表明AMPK在有利于胆汁淤积的条件下直接磷酸化并调节FXR转录活性,以沉淀肝脏损伤。

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