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Hypoxia inhibits hepcidin expression in HuH7 hepatoma cells via decreased SMAD4 signaling

机译:通过降低的Smad4信号传导,缺氧抑制Huh7肝癌细胞中的肝素表达

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Hepcidin negatively regulates systemic iron homeostasis in response to inflammation and elevated serum iron. Conversely, hepcidin expression is diminished in response to hypoxia, oxidative stress, and increased erythropoietic demand, though the molecular intermediates involved are incompletely understood. To address this, we have investigated hypoxic hepcidin regulation in HuH7 hepatoma cells either cultured alone or cocultured with activated THP-1 macrophages. HuH7 hepcidin mRNA expression was determined using quantitative polymerase chain reaction (Q-PCR). Hepcidin promoter activity was measured using luciferase reporter constructs containing a 0.9 kb fragment of the wild-type human hepcidin promoter, and constructs containing mutations in bone morphogenetic protein (BMP)/SMAD4, signal transducer and activator of transcription 3 (STAT3), CCAAT/enhancer-binding protein (C/EBP), and E-box-responsive elements. Hepatic expression of bone morphogenetic proteins BMP2 and BMP6 and the BMP inhibitor noggin was determined using Q-PCR, and the protein expression of hemojuvelin (HJV), pSMAD 1/5/8, and SMAD4 was determined by western blotting. Following exposure to hypoxia or H_2O_2, hepcidin mRNA expression and promoter activity increased in HuH7 cells monocultures but were decreased in HuH7 cells cocultured with THP-1 macrophages. This repression was attenuated by mutation of the BMP/SMAD4-response element, suggesting that modulation of SMAD signaling mediated the response to hypoxia. No changes in hepatocyte BMP2, BMP6 or noggin mRNA, or protein expression of HJV or pSMAD 1/5/8 were detected. However, treatment with hypoxia caused a marked decrease in nuclear and cytosolic SMAD4 protein and SMAD4 mRNA expression in cocultured HuH7 cells. Together these data indicate that hypoxia represses hepcidin expression through inhibition of BMP/ SMAD signaling.
机译:Hepcidin对炎症和血清铁升高的血清铁来负面调节全身铁袜。相反,肝素表达响应于缺氧,氧化应激和增加的促红细胞需求而减少,尽管所涉及的分子中间体被不完全理解。为了解决这一点,我们研究了Huh7肝癌细胞中的缺氧肝素调节,可以单独培养或通过活化的THP-1巨噬细胞培养。使用定量聚合酶链反应(Q-PCR)测定HuH7 Hepcidin mRNA表达。使用含有0.9kb片段的野生型人肝素启动子的荧光素酶报告构建体测量肝素启动子活性,并在骨形态发生蛋白(BMP)/ smad4中的突变构建,转录3(Stat3),CCAAT /增强剂结合蛋白(C / EBP)和E-Box响应元件。使用Q-PCR测定骨形态发生蛋白BMP2和BMP6和BMP抑制剂Noggin的肝脏表达,并通过Western印迹测定Hemojuvelin(HJV),PSMAD1 / 5/8和Smad4的蛋白表达。在接触缺氧或H_2O_2之后,HUH7细胞单篇文献中的Hepcidin mRNA表达和启动子活性增加,但随着THP-1巨噬细胞的HUH7细胞中的HUH7细胞减少。这种抑制因BMP / SMAD4-响应元件的突变而衰减,表明SMAD信号传导的调节介导对缺氧的反应。未检测到肝细胞BMP2,BMP6或Noggin mRNA或HJV或PSMAD 1/5/8的蛋白表达的变化。然而,用缺氧治疗导致核和细胞源Smad4蛋白的显着减少,并在可共培养的HUH7细胞中进行Smad4 mRNA表达。这些数据集中表明缺氧通过抑制BMP / Smad信号传导来抑制肝素表达。

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