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Ultrasound-Guided Orthotopic Implantation of Murine Pancreatic Ductal Adenocarcinoma
Published on: November 19, 2019
ID1 Mediates Escape from TGFβ Tumor Suppression in Pancreatic Cancer
Yun-Han Huang1,2,3, Jing Hu1, Fei Chen1
1Cancer Biology and Genetics Program, Sloan Kettering Institute, Memorial Sloan Kettering Cancer Center, New York, New York.
Abstract:
TGFβ is an important tumor suppressor in pancreatic ductal adenocarcinoma (PDA), yet inactivation of TGFβ pathway components occurs in only half of PDA cases. TGFβ cooperates with oncogenic RAS signaling to trigger epithelial-to-mesenchymal transition (EMT) in premalignant pancreatic epithelial progenitors, which is coupled to apoptosis owing to an imbalance of SOX4 and KLF5 transcription factors. We report that PDAs that develop with the TGFβ pathway intact avert this apoptotic effect via ID1. ID1 family members are expressed in PDA progenitor cells and encode components of a set of core transcriptional regulators shared by PDAs. PDA progression selects against TGFβ-mediated repression of ID1. The sustained expression of ID1 uncouples EMT from apoptosis in PDA progenitors. AKT signaling and mechanisms linked to low-frequency genetic events converge on ID1 to preserve its expression in PDA. Our results identify ID1 as a crucial node and potential therapeutic target in PDA. SIGNIFICANCE: Half of PDAs escape TGFβ-induced tumor suppression without inactivating the TGFβ pathway. We report that ID1 expression is selected for in PDAs and that ID1 uncouples TGFβ-induced EMT from apoptosis. ID1 thus emerges as a crucial regulatory node and a target of interest in PDA.This article is highlighted in the In This Issue feature, p. 1.
Insights
In pancreatic cancer, ID1 protein allows tumors to evade the tumor-suppressing effects of TGFβ signaling, promoting cancer progression. ID1 is a potential therapeutic target for pancreatic ductal adenocarcinoma.
Area of Science:
- Molecular Biology
- Oncology
- Cancer Research
Background:
- Transforming Growth Factor beta (TGFβ) acts as a tumor suppressor in pancreatic ductal adenocarcinoma (PDA).
- However, only half of PDA cases show inactivation of TGFβ pathway components, suggesting alternative mechanisms of tumor escape.
- TGFβ signaling, in conjunction with oncogenic RAS, can induce apoptosis in premalignant pancreatic cells via transcription factor imbalance.
Purpose of the Study:
- To investigate the mechanism by which PDAs with intact TGFβ pathways evade tumor suppression.
- To identify the role of ID1 in decoupling epithelial-to-mesenchymal transition (EMT) from apoptosis in PDA progenitors.
- To explore ID1 as a potential therapeutic target in PDA.
Main Methods:
- Analysis of gene expression in PDA progenitor cells.
- Investigating the regulatory mechanisms controlling ID1 expression in PDA.
- Studying the interplay between TGFβ, RAS, ID1, and apoptotic pathways in PDA development.
Main Results:
- PDAs with intact TGFβ signaling avert apoptosis by upregulating ID1.
- ID1 expression is selected for during PDA progression, decoupling EMT from apoptosis.
- AKT signaling and other genetic events converge to maintain ID1 expression in PDA.
Conclusions:
- ID1 is a critical regulator that allows pancreatic tumors to bypass TGFβ-mediated tumor suppression.
- Sustained ID1 expression uncouples EMT from apoptosis, facilitating PDA progression.
- ID1 represents a significant therapeutic target for pancreatic ductal adenocarcinoma.
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