首页> 美国卫生研究院文献>other >Interaction of ApoA-IV with NR4A1 and NR1D1 Represses G6Pase and PEPCK Transcription: Nuclear Receptor-Mediated Downregulation of Hepatic Gluconeogenesis in Mice and a Human Hepatocyte Cell Line
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Interaction of ApoA-IV with NR4A1 and NR1D1 Represses G6Pase and PEPCK Transcription: Nuclear Receptor-Mediated Downregulation of Hepatic Gluconeogenesis in Mice and a Human Hepatocyte Cell Line

机译:ApoA-IV与NR4A1和NR1D1的相互作用抑制G6Pase和PEPCK转录:核受体介导的小鼠肝糖异生和人类肝细胞系的下调

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摘要

We have previously shown that the nuclear receptor, NR1D1, is a cofactor in ApoA-IV-mediated downregulation of gluconeogenesis. Nuclear receptor, NR4A1, is involved in the transcriptional regulation of various genes involved in inflammation, apoptosis, and glucose metabolism. We investigated whether NR4A1 influences the effect of ApoA-IV on hepatic glucose metabolism. Our in situ proximity ligation assays and coimmunoprecipitation experiments indicated that ApoA-IV colocalized with NR4A1 in human liver (HepG2) and kidney (HEK-293) cell lines. The chromatin immunoprecipitation experiments and luciferase reporter assays indicated that the ApoA-IV and NR4A1 colocalized at the RORα response element of the human G6Pase promoter, reducing its transcriptional activity. Our RNA interference experiments showed that knocking down the expression of NR4A1 in primary mouse hepatocytes treated with ApoA-IV increased the expression of NR1D1, G6Pase, and PEPCK, and that knocking down NR1D1 expression increased the level of NR4A1. We also found that ApoA-IV induced the expression of endogenous NR4A1 in both cultured primary mouse hepatocytes and in the mouse liver, and decreased glucose production in primary mouse hepatocytes. Our findings showed that ApoA-IV colocalizes with NR4A1, which suppresses G6Pase and PEPCK gene expression at the transcriptional level, reducing hepatic glucose output and lowering blood glucose. The ApoA-IV-induced increase in NR4A1 expression in hepatocytes mediates further repression of gluconeogenesis. Our findings suggest that NR1D1 and NR4A1 serve similar or complementary functions in the ApoA-IV-mediated regulation of gluconeogenesis.
机译:我们以前已经表明,核受体NR1D1是ApoA-IV介导的糖异生的下调中的辅助因子。核受体NR4A1参与各种与炎症,凋亡和葡萄糖代谢有关的基因的转录调控。我们调查了NR4A1是否影响ApoA-IV对肝葡萄糖代谢的影响。我们的原位邻近连接测定和免疫共沉淀实验表明,ApoA-IV与NR4A1在人肝(HepG2)和肾(HEK-293)细胞系中共定位。染色质免疫沉淀实验和荧光素酶报告基因检测表明,ApoA-IV和NR4A1共定位在人G6Pase启动子的RORα反应元件上,从而降低了其转录活性。我们的RNA干扰实验表明,敲低ApoA-IV处理的原代小鼠肝细胞中NR4A1的表达会增加NR1D1,G6Pase和PEPCK的表达,而敲低NR1D1的表达会增加NR4A1的水平。我们还发现,ApoA-IV在培养的原代小鼠肝细胞和小鼠肝脏中均诱导内源性NR4A1的表达,并降低了原代小鼠肝细胞中的葡萄糖生成。我们的发现表明,ApoA-IV与NR4A1共定位,从而在转录水平上抑制G6Pase和PEPCK基因的表达,从而降低了肝脏的葡萄糖输出并降低了血糖。 ApoA-IV诱导的肝细胞中NR4A1表达的增加介导了糖异生的进一步抑制。我们的研究结果表明,NR1D1和NR4A1在ApoA-IV介导的糖异生的调节中起着相似或互补的作用。

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