Description
Activating mutations in KRAS are among the most frequent events in diverse human carcinomas  and are particularly prominent in human pancreatic ductal adenocarcinoma (PDAC). An  inducible KrasG12D-driven mouse model of PDAC has established a critical role for sustained  KrasG12D expression in tumor maintenance, providing a model to determine the potential for, and  underlying mechanisms of, KrasG12Dindependent PDAC recurrence. Here we show that some  tumors undergo spontaneous relapse and are devoid of KrasG12D expression and downstream  canonical MAPK signaling and instead acquired amplification and overexpression of the  transcriptional co-activator Yap1. Functional studies established the role of Yap1 and the  transcriptional factor Tead2 in driving KrasG12Dindependent tumor maintenance. The  Yap1/Tead2 complex acts cooperatively with E2F transcription factors to activate a cell cycle  and DNA replication program. Our studies, along with corroborating evidence from human  PDAC models, portend a novel mechanism of escape from oncogenic Kras addiction in PDAC.