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Published on: February 2, 2024
YAP and AP-1 Cooperate to Initiate Pancreatic Cancer Development from Ductal Cells in Mice
Jaeoh Park1, David Eisenbarth1, Wonyoung Choi2
1Department of Biological Sciences, National Creative Research Initiatives Center, Korea Advanced Institute of Science and Technology, Daejeon, Republic of Korea.
Abstract:
The development of pancreatic cancer is heavily dependent upon the aberrant activation of KRAS signaling. Among the downstream targets of KRAS, the effectors of the Hippo pathway YAP and TAZ (YAP/TAZ) are crucial during cancer initiation and progression. However, little is known about the cell type-specific effects of YAP/TAZ on the development of pancreatic cancer. Here we clarify the unique consequences of YAP/TAZ activation in the ductal cell population of the pancreas by generating mice with pancreatic duct cell-specific, inducible knockouts of Lats1 and Lats2, the main kinases upstream of YAP/TAZ. Oncogenic activation of YAP by deletion of Lats1/2 in ductal cells led to the rapid transformation of the pancreas, which was accompanied by a robust increase in the expression of YAP and AP-1 target genes. Pharmacologic inhibition of AP-1 activity induced death in Lats1/2 knockout organoids and attenuated YAP-dependent transformation of the pancreas in vivo. Both YAP and AP-1 were activated during the development of KRAS-dependent cancer in mice and human patients with pancreatic ductal adenocarcinoma, suggesting that this signaling hub represents an important mediator of pancreatic cancer development and progression. Collectively, these data define a YAP-dependent mechanism of pancreatic cancer cell development and suggest that inhibition of AP-1 can suppress this development. SIGNIFICANCE: A pancreatic ductal cell-specific knockout mouse model featuring constitutively active YAP allows for the study of YAP-dependent transformation of the pancreas and for screening pharmacologically active inhibitors.
Insights
Activating YAP/TAZ in pancreatic ductal cells drives cancer by increasing YAP and AP-1 activity. Inhibiting AP-1 suppresses this YAP-driven pancreatic cancer development.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Pancreatic cancer development relies on KRAS signaling.
- YAP and TAZ (YAP/TAZ) are key downstream effectors of KRAS, influencing cancer initiation and progression.
- The specific roles of YAP/TAZ in pancreatic cancer development remain unclear.
Purpose of the Study:
- To investigate the cell type-specific consequences of YAP/TAZ activation in pancreatic ductal cells.
- To elucidate the mechanism by which YAP/TAZ contributes to pancreatic cancer.
- To identify potential therapeutic targets for pancreatic cancer.
Main Methods:
- Generated mice with pancreatic duct cell-specific, inducible knockouts of Lats1 and Lats2 (kinases upstream of YAP/TAZ).
- Analyzed YAP and AP-1 target gene expression.
- Utilized pharmacologic inhibition of AP-1 activity in organoids and in vivo models.
- Examined YAP and AP-1 activation in KRAS-dependent pancreatic cancer models and human pancreatic ductal adenocarcinoma.
Main Results:
- Deletion of Lats1/2 in ductal cells led to rapid pancreatic transformation with increased YAP and AP-1 target gene expression.
- Pharmacologic inhibition of AP-1 induced cell death in knockout organoids and reduced YAP-dependent transformation in vivo.
- Both YAP and AP-1 were activated in KRAS-dependent pancreatic cancer in mice and humans.
Conclusions:
- YAP/TAZ activation in pancreatic ductal cells drives cancer development through YAP and AP-1 signaling.
- The YAP-AP-1 signaling axis is a critical mediator of pancreatic cancer.
- Inhibition of AP-1 represents a potential therapeutic strategy to suppress YAP-driven pancreatic cancer.

