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Publication : Fbxw7 Deletion Accelerates Kras<sup>G12D</sup>-Driven Pancreatic Tumorigenesis via Yap Accumulation.

First Author  Zhang Q Year  2016
Journal  Neoplasia Volume  18
Issue  11 Pages  666-673
PubMed ID  27764699 Mgi Jnum  J:320224
Mgi Id  MGI:6869254 Doi  10.1016/j.neo.2016.08.009
Citation  Zhang Q, et al. (2016) Fbxw7 Deletion Accelerates Kras(G12D)-Driven Pancreatic Tumorigenesis via Yap Accumulation. Neoplasia 18(11):666-673
abstractText  Pancreatic cancers driven by KRAS mutations require additional mutations for tumor progression. The tumor suppressor FBXW7 is altered in pancreatic cancers, but its contribution to pancreatic tumorigenesis is unknown. To determine potential cooperation between Kras mutation and Fbxw7 inactivation in pancreatic tumorigenesis, we generated P48-Cre;LSL-Kras(G12D);Fbxw7(fl/fl) (KFC(fl/fl)) compound mice. We found that KFC(fl/fl) mice displayed accelerated tumorigenesis: all mice succumbed to pancreatic ductal adenocarcinoma (PDA) by 40 days of age, with PDA onset occurring by 2 weeks of age. PDA in KFC(fl/fl) mice was preceded by earlier onset of acinar-to-ductal metaplasia (ADM) and pancreatic intraepithelial neoplasia (PanIN) lesions, and associated with chromosomal instability and the accumulation of Fbxw7 substrates Yes-associated protein (Yap), c-Myc, and Notch. Using KFC(fl/fl) and FBXW7-deficient human pancreatic cancer cells, we found that Yap silencing attenuated growth promotion by Fbxw7 deletion. Our data demonstrate that Fbxw7 is a potent suppressor of Kras(G12D)-induced pancreatic tumorigenesis due, at least in part, to negative regulation of Yap.
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