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首页> 外文期刊>American Journal of Translational Research >Pancreatic and duodenal homeobox gene 1 (Pdx1) down-regulates hepatic transcription factor 1 alpha (HNF1?±) expression during reprogramming of human hepatic cells into insulin-producing cells
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Pancreatic and duodenal homeobox gene 1 (Pdx1) down-regulates hepatic transcription factor 1 alpha (HNF1?±) expression during reprogramming of human hepatic cells into insulin-producing cells

机译:胰腺和十二指肠同源盒基因1(Pdx1)下调人肝细胞重编程为产生胰岛素的细胞中肝转录因子1α(HNF1α±)的表达

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Ectopic expression of Pdx1 triggers rapid hepatocyte dedifferentiation by down-regulating liver-enriched transcription factors and liver-specific functional genes such as hepatic nuclear factor-1α (HNF1α), albumin, and AAT. However, the links between Pdx1 over-expression and hepatic gene down-regulation are incompletely understood. HNF1α and HNF4α are important transcription factors that establish and maintain the hepatocyte phenotype. The human HNF4α gene contains two promoters (P1 and P2) that drive expression of P1-(HNF4α 1-6) or P2-(HNF4α 7-9)-derived isoforms, which are used in different tissues and at different times during development. We hypothesized that the relative expression of HNF1α and HNF4α following ectopic Pdx1 expression may promote hepatic cell dedifferentiation and transdifferentiation toward pancreatic beta-cells. We produced lentiviruses expressing Pdx1, Pdx1-VP16, and Ngn3, along with dual-color reporter genes to indicate hepatic and pancreatic beta-cell phenotype changes. Using these PTF alone or in combinations, we demonstrated that Pdx1 not only activates specific beta-cell genes but down-regulates HNF1α. Pdx1-mediated reduction of HNF1α is accompanied by altered expression of its major activator, HNF4α isoforms, down-regulating hepatic genes ALB and AAT. Pdx1 up-regulates HNF4α via the P2 promoter. These P2-driven isoforms compete with P1-driven isoforms to suppress target gene transcription. In Huh7 cells, the AF-1 activation domain is more important for transactivation, whereas in INS1 cells, the F inhibitory domain is more important. The loss and gain of functional activity strongly suggests that Pdx1 plays a central role in reprogramming hepatocytes into beta-cells by suppressing the hepatic phenotype.
机译:Pdx1的异位表达通过下调富含肝脏的转录因子和肝脏特异性功能基因(例如肝核因子1α(HNF1α),白蛋白和AAT)来触发快速肝细胞去分化。但是,Pdx1过表达与肝基因下调之间的联系尚不完全清楚。 HNF1α和HNF4α是建立和维持肝细胞表型的重要转录因子。人类HNF4α基因包含两个启动子(P1和P2),这些启动子驱动P1-(HNF4α1-6)或P2-(HNF4α7-9)衍生的同工型表达,它们在不同的组织中以及发育期间的不同时间使用。我们假设异位Pdx1表达后HNF1α和HNF4α的相对表达可能促进肝细胞向胰腺β细胞的去分化和转分化。我们生产了表达Pdx1,Pdx1-VP16和Ngn3的慢病毒,以及双色报告基因,以指示肝和胰腺β细胞表型的变化。单独或组合使用这些PTF,我们证明Pdx1不仅激活特定的β细胞基因,而且下调HNF1α。 Pdx1介导的HNF1α减少伴随着其主要激活因子HNF4α亚型的表达改变,下调了肝基因ALB和AAT。 Pdx1通过P2启动子上调HNF4α。这些P2驱动的同工型与P1驱动的同工型竞争以抑制靶基因的转录。在Huh7细胞中,AF-1激活域对于反式激活更为重要,而在INS1细胞中,F抑制域则更为重要。功能活性的丧失和获得强烈表明,Pdx1通过抑制肝表型在将肝细胞重编程为β细胞中起着核心作用。

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