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Published on: October 23, 2018
PTEN deficiency mediates a reciprocal response to IGFI and mTOR inhibition
Mukund Patel1, Nicholas C Gomez2, Andrew W McFadden1
1Department of Genetics and Lineberger Comprehensive Cancer Center, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina.
Unlabelled:
Recent evidence implicates the insulin-like growth factor (IGF) pathway in development of Ewing sarcoma, a highly malignant bone and soft-tissue tumor that primarily affects children and young adults. Despite promising results from preclinical studies of therapies that target this pathway, early-phase clinical trials have shown that a significant fraction of patients do not benefit, suggesting that cellular factors determine tumor sensitivity. Using FAIRE-seq, a chromosomal deletion of the PTEN locus in a Ewing sarcoma cell line was identified. In primary tumors, PTEN deficiency was observed in a large subset of cases, although not mediated by large chromosomal deletions. PTEN loss resulted in hyperactivation of the AKT signaling pathway. PTEN rescue led to decreased proliferation, inhibition of colony formation, and increased apoptosis. Strikingly, PTEN loss decreased sensitivity to IGF1R inhibitors but increased responsiveness to temsirolimus, a potent mTOR inhibitor, as marked by induction of autophagy. These results suggest that PTEN is lost in a significant fraction of primary tumors, and this deficiency may have therapeutic consequences by concurrently attenuating responsiveness to IGF1R inhibition while increasing activity of mTOR inhibitors. The identification of PTEN status in the tumors of patients with recurrent disease could help guide the selection of therapies.
Implications:
PTEN status in Ewing sarcoma affects cellular responses to IGFI and mTOR-directed therapy, thus justifying its consideration as a biomarker in future clinical trials.
Insights
Loss of PTEN in Ewing sarcoma impacts treatment effectiveness. PTEN deficiency reduces sensitivity to IGF1R inhibitors but enhances response to mTOR inhibitors like temsirolimus.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- The insulin-like growth factor (IGF) pathway is implicated in Ewing sarcoma development.
- Clinical trials show variable patient response to IGF-targeted therapies, suggesting other factors influence sensitivity.
Purpose of the Study:
- To investigate the role of PTEN in Ewing sarcoma sensitivity to targeted therapies.
- To identify biomarkers that predict response to IGF and mTOR inhibitors.
Main Methods:
- FAIRE-seq was used to identify chromosomal deletions in Ewing sarcoma cell lines.
- PTEN deficiency was assessed in primary Ewing sarcoma tumors.
- PTEN rescue experiments were performed in cell lines.
- Sensitivity to IGF1R and mTOR inhibitors was evaluated.
Main Results:
- PTEN deficiency was identified in a subset of Ewing sarcoma cell lines and primary tumors.
- PTEN loss led to AKT pathway hyperactivation.
- Restoring PTEN reduced proliferation and increased apoptosis.
- PTEN loss decreased sensitivity to IGF1R inhibitors but increased sensitivity to the mTOR inhibitor temsirolimus, inducing autophagy.
Conclusions:
- PTEN status is a critical determinant of Ewing sarcoma response to IGF and mTOR-directed therapies.
- PTEN deficiency has significant therapeutic implications, impacting treatment selection.
- PTEN can be considered a potential biomarker for guiding therapy in Ewing sarcoma patients.
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