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Loss of Fbw7 reprograms adult pancreatic ductal cells into α, δ, and β cells

机译:Fbw7的丢失将成年胰腺导管细胞重编程为α,δ和β细胞

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The adult pancreas is capable of limited regeneration after injury but has no defined stem cell population. The cell types and molecular signals that govern the production of new pancreatic tissue are not well understood. Here, we show that inactivation of the SCF-type E3 ubiquitin ligase substrate recognition component Fbw7 induces pancreatic ductal cells to reprogram into α, δ, and β cells. Loss of Fbw7 stabilized the transcription factor Ngn3, a key regulator of endocrine cell differentiation. The induced β cells resemble islet β cells in morphology and histology, express genes essential for β cell function, and release insulin after glucose challenge. Thus, loss of Fbw7 appears to reawaken an endocrine developmental differentiation program in adult pancreatic ductal cells. Our study highlights the plasticity of seemingly differentiated adult cells, identifies Fbw7 as a master regulator of cell fate decisions in the pancreas, and reveals adult pancreatic duct cells as a latent multipotent cell type.
机译:成年胰腺在损伤后能够有限地再生,但是没有明确的干细胞数量。控制新的胰腺组织产生的细胞类型和分子信号还不是很清楚。在这里,我们显示SCF型E3泛素连接酶底物识别组分Fbw7的失活诱导胰腺导管细胞重编程为α,δ和β细胞。 Fbw7的丢失稳定了转录因子Ngn3,后者是内分泌细胞分化的关键调节因子。诱导的β细胞在形态和组织学上类似于胰岛β细胞,表达β细胞功能所必需的基因,并在葡萄糖激发后释放胰岛素。因此,Fbw7的丢失似乎重新唤醒了成人胰腺导管细胞的内分泌发育分化程序。我们的研究强调了看似分化的成年细胞的可塑性,确定了Fbw7是胰腺细胞命运决定的主要调节因子,并揭示了成年胰腺导管细胞是潜在的多能细胞类型。

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