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首页> 外文期刊>Cell Reports >REST Inhibits Direct Reprogramming of Pancreatic Exocrine to Endocrine Cells by Preventing PDX1-Mediated Activation of Endocrine Genes
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REST Inhibits Direct Reprogramming of Pancreatic Exocrine to Endocrine Cells by Preventing PDX1-Mediated Activation of Endocrine Genes

机译:通过预防pdx1介导的内分泌基因的激活,静止抑制对内分泌细胞的直接重新编程对内分泌细胞

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摘要

The emerging appreciation of plasticity among pancreatic lineages has created interest in harnessing cellular reprogramming for β cell replacement therapy of diabetes. Current reprogramming methodologies are inefficient, largely because of a limited understanding of the underlying mechanisms. Using an in?vitro reprogramming system, we reveal the transcriptional repressor RE-1 silencing transcription factor (REST) as a barrier for β cell gene expression in the reprogramming of pancreatic exocrine cells. We observe that REST-bound loci lie adjacent to the binding sites of multiple key β cell transcription factors, including PDX1. Accordingly, a loss of REST function combined with PDX1 expression results in the synergistic activation of endocrine genes. This is accompanied by increased histone acetylation and PDX1 binding at endocrine gene loci. Collectively, our data identify a mechanism for REST activity involving the prevention of PDX1-mediated activation of endocrine genes and uncover REST downregulation and the resulting chromatin alterations as key events in β cell reprogramming.
机译:胰谱系中可塑性的新兴欣赏已经为糖尿病β细胞替代疗法的利用细胞重编程创造了兴趣。目前的重编程方法效率低下,主要是因为对潜在机制有限的理解。使用IN的体外重编程系统,我们揭示转录阻遏物RE-1沉默转录因子(静止)作为胰腺外泌体细胞重新编程中的β细胞基因表达的屏障。我们观察到休息的基因座在多个键β细胞转录因子的结合位点附近,包括PDX1。因此,与PDX1表达结合的静止功能的损失导致内分泌基因的协同激活。这伴随着在内分泌基因基因座上增加的组蛋白乙酰化和PDX1结合。集体,我们的数据鉴定了涉及预防PDX1介导的内分泌基因的激活的休息活性的机制,并将所得染色质改变作为β细胞重新编程中的关键事件。

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