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首页> 外文期刊>Frontiers in Endocrinology >Cooperation between HMGA1, PDX-1, and MafA is Essential for Glucose-Induced Insulin Transcription in Pancreatic Beta Cells
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Cooperation between HMGA1, PDX-1, and MafA is Essential for Glucose-Induced Insulin Transcription in Pancreatic Beta Cells

机译:HMGA1,PDX-1和MafA之间的合作对于胰岛β细胞中葡萄糖诱导的胰岛素转录至关重要

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The high-mobility group AT-hook 1 (HMGA1) protein is a nuclear architectural factor that can organize chromatin structures. It regulates gene expression by controlling the formation of stereospecific multiprotein complexes called “enhanceosomes” on the AT-rich regions of target gene promoters. Previously, we reported that defects in HMGA1 caused decreased insulin receptor expression and increased susceptibility to type 2 diabetes mellitus in humans and mice. Interestingly, mice with disrupted HMGA1 gene had significantly smaller islets and decreased insulin content in their pancreata, suggesting that HMGA1 may have a direct role in insulin transcription and secretion. Herein, we investigate the regulatory roles of HMGA1 in insulin transcription. We provide evidence that HMGA1 physically interacts with PDX-1 and MafA, two critical transcription factors for insulin gene expression and beta-cell function, both in vitro and in vivo . We then show that the overexpression of HMGA1 significantly improves the transactivating activity of PDX-1 and MafA on human and mouse insulin promoters, while HMGA1 knockdown considerably decreased this transactivating activity. Lastly, we demonstrate that high glucose stimulus significantly increases the binding of HMGA1 to the insulin ( INS ) gene promoter, suggesting that HMGA1 may act as a glucose-sensitive element controlling the transcription of the INS gene. Together, our findings provide evidence that HMGA1, by regulating PDX-1- and MafA-induced transactivation of the INS gene promoter, plays a critical role in pancreatic beta-cell function and insulin production.
机译:高迁移率的AT-hook 1(HMGA1)组蛋白是可以组织染色质结构的核结构因子。它通过控制靶基因启动子富含AT的区域上称为“增强体”的立体特异性多蛋白复合物的形成来调节基因表达。先前,我们报道了HMGA1中的缺陷导致人类和小鼠的胰岛素受体表达降低和对2型糖尿病的易感性增加。有趣的是,HMGA1基因被破坏的小鼠的胰岛明显较小,胰脏中的胰岛素含量降低,这表明HMGA1可能在胰岛素的转录和分泌中具有直接作用。在本文中,我们调查了HMGA1在胰岛素转录中的调控作用。我们提供的证据表明HMGA1与PDX-1和MafA物理相互作用,PDX-1和MafA是体内和体外胰岛素基因表达和β细胞功能的两个关键转录因子。然后,我们表明HMGA1的过表达显着提高了PDX-1和MafA对人和小鼠胰岛素启动子的反式激活活性,而HMGA1的敲低大大降低了这种反式激活活性。最后,我们证明了高葡萄糖刺激显着增加了HMGA1与胰岛素(INS)基因启动子的结合,这表明HMGA1可能是控制INS基因转录的葡萄糖敏感元件。在一起,我们的发现提供了证据,HMGA1通过调节PDX-1-和MafA诱导的INS基因启动子的反式激活,在胰腺β细胞功能和胰岛素产生中起关键作用。

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