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首页> 外文期刊>Biochemistry and Cell Biology >Inhibition of Hes1 activity in gall bladder epithelial cells promotes insulin expression and glucose responsiveness.
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Inhibition of Hes1 activity in gall bladder epithelial cells promotes insulin expression and glucose responsiveness.

机译:胆囊上皮细胞中Hes1活性的抑制促进胰岛素表达和葡萄糖反应性。

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The biliary system has a close developmental relationship with the pancreas, evidenced by the natural occurrence of small numbers of biliary-derived beta-cells in the biliary system and by the replacement of biliary epithelium with pancreatic tissue in mice lacking the transcription factor Hes1. In normal pancreatic development, Hes1 is known to repress endocrine cell formation. Here we show that glucose-responsive insulin secretion can be induced in biliary epithelial cells when activity of the transcription factor Hes1 is antagonised. We describe a new culture system for adult murine gall bladder epithelial cells (GBECs), free from fibroblast contamination. We show that Hes1 is expressed both in adult murine gall bladder and in cultured GBECs. We have created a new dominant negative Hes1 (DeltaHes1) by removal of the DNA-binding domain, and show that it antagonises Hes1 function in vivo. When DeltaHes1 is introduced into the GBEC it causes expression of insulin RNA and protein. Furthermore, it confers upon the cells the ability to secrete insulin following exposure to increased external glucose. GBEC cultures are induced to express a wider range of mature beta cell markers when co-transduced with DeltaHes1 and the pancreatic transcription factor Pdx1. Introduction of DeltaHes1 and Pdx1 can therefore initiate a partial respecification of phenotype from biliary epithelial cell towards the pancreatic beta cell.
机译:胆道系统与胰腺具有密切的发育关系,这在胆道系统中自然存在少量胆道衍生的β细胞,以及在缺乏转录因子Hes1的小鼠中用胰腺组织代替胆道上皮得以证明。在正常的胰腺发育中,已知Hes1抑制内分泌细胞的形成。在这里,我们显示了当转录因子Hes1的活性被拮抗时,可以在胆道上皮细胞中诱导葡萄糖反应性胰岛素分泌。我们描述了成年鼠胆囊上皮细胞(GBECs),不受成纤维细胞污染的新的培养系统。我们显示,Hes1在成年鼠胆和培养的GBEC中均表达。我们通过去除DNA结合结构域创建了一个新的显性负性Hes1(DeltaHes1),并显示了它在体内拮抗Hes1的功能。将DeltaHes1引入GBEC后,它会引起胰岛素RNA和蛋白质的表达。此外,它在暴露于增加的外部葡萄糖之后赋予细胞分泌胰岛素的能力。当与DeltaHes1和胰腺转录因子Pdx1共转导时,GBEC培养物被诱导表达更广泛的成熟β细胞标记。因此,引入DeltaHes1和Pdx1可以启动从胆道上皮细胞向胰腺β细胞的表型的部分重新指定。

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