Genetic ablation of Smoothened in pancreatic fibroblasts increases acinar-ductal metaplasia

The contribution of the microenvironment to pancreatic acinar-to-ductal metaplasia (ADM), a preneoplastic transition in oncogenic Kras-driven pancreatic cancer progression, is currently unclear. Here we show that disruption of paracrine Hedgehog signaling via genetic ablation of Smoothened (Smo) in...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:Genes & development 2016-09, Vol.30 (17), p.1943-1955
Hauptverfasser: Liu, Xin, Pitarresi, Jason R, Cuitiño, Maria C, Kladney, Raleigh D, Woelke, Sarah A, Sizemore, Gina M, Nayak, Sunayana G, Egriboz, Onur, Schweickert, Patrick G, Yu, Lianbo, Trela, Stefan, Schilling, Daniel J, Halloran, Shannon K, Li, Maokun, Dutta, Shourik, Fernandez, Soledad A, Rosol, Thomas J, Lesinski, Gregory B, Shakya, Reena, Ludwig, Thomas, Konieczny, Stephen F, Leone, Gustavo, Wu, Jinghai, Ostrowski, Michael C
Format: Artikel
Sprache:eng
Schlagworte:
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:The contribution of the microenvironment to pancreatic acinar-to-ductal metaplasia (ADM), a preneoplastic transition in oncogenic Kras-driven pancreatic cancer progression, is currently unclear. Here we show that disruption of paracrine Hedgehog signaling via genetic ablation of Smoothened (Smo) in stromal fibroblasts in a Kras(G12D) mouse model increased ADM. Smo-deleted fibroblasts had higher expression of transforming growth factor-α (Tgfa) mRNA and secreted higher levels of TGFα, leading to activation of EGFR signaling in acinar cells and increased ADM. The mechanism involved activation of AKT and noncanonical activation of the GLI family transcription factor GLI2. GLI2 was phosphorylated at Ser230 in an AKT-dependent fashion and directly regulated Tgfa expression in fibroblasts lacking Smo Additionally, Smo-deleted fibroblasts stimulated the growth of Kras(G12D)/Tp53(R172H) pancreatic tumor cells in vivo and in vitro. These results define a non-cell-autonomous mechanism modulating Kras(G12D)-driven ADM that is balanced by cross-talk between Hedgehog/SMO and AKT/GLI2 pathways in stromal fibroblasts.
ISSN:0890-9369
1549-5477
DOI:10.1101/gad.283499.116