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

First Author  Sancho R Year  2014
Journal  Cell Stem Cell Volume  15
Issue  2 Pages  139-53
PubMed ID  25105579 Mgi Jnum  J:215154
Mgi Id  MGI:5604771 Doi  10.1016/j.stem.2014.06.019
Citation  Sancho R, et al. (2014) Loss of Fbw7 reprograms adult pancreatic ductal cells into alpha, delta, and beta cells. Cell Stem Cell 15(2):139-53
abstractText  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 alpha, delta, and beta cells. Loss of Fbw7 stabilized the transcription factor Ngn3, a key regulator of endocrine cell differentiation. The induced beta cells resemble islet beta cells in morphology and histology, express genes essential for beta 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.
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