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The Ectopic Expression of Pax4 in the Mouse Pancreas Converts Progenitor Cells into alpha and Subsequently beta Cells

机译:Pax4在小鼠胰腺中的异位表达将祖细胞转化为alpha细胞,随后转化为beta细胞

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摘要

We have previously reported that the loss of Arx and/or Pax4 gene activity leads to a shift in the fate of the different endocrine cell subtypes in the mouse pancreas, without affecting the total endocrine cell numbers. Here, we conditionally and ectopically express Pax4 using different cell-specific promoters and demonstrate that Pax4 forces endocrine precursor cells, as well as mature alpha cells, to adopt a beta cell destiny. This results in a glucagon deficiency that provokes a compensatory and continuous glucagon(+) cell neogenesis requiring the re-expression of the pro-endocrine gene Ngn3. However, the newly formed alpha cells fail to correct the hypoglucagonemia since they subsequently acquire a beta cell phenotype upon Pax4 ectopic expression. Notably, this cycle of neogenesis and redifferentiation caused by ectopic expression of Pax4 in alpha cells is capable of restoring a functional beta cellmass and curing diabetes in animals that have been chemically depleted of beta cells.
机译:我们以前曾报道过,Arx和/或Pax4基因活性的丧失导致小鼠胰腺中不同内分泌细胞亚型的命运改变,而不影响总内分泌细胞数。在这里,我们有条件地和异位地使用不同的细胞特异性启动子表达Pax4,并证明Pax4迫使内分泌前体细胞以及成熟的α细胞采用β细胞的命运。这会导致胰高血糖素缺乏症,从而引起需要连续表达内分泌前体基因Ngn3的代偿性和连续性胰高血糖素(+)细胞新生。然而,新形成的α细胞不能纠正低血糖症,因为它们随后在Pax4异位表达后获得了β细胞表型。值得注意的是,由Pax4在α细胞中异位表达引起的这种新生和再分化的循环能够恢复功能性β细胞质量并治愈已经化学消耗了β细胞的动物中的糖尿病。

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