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Functional profiling of receptor tyrosine kinases and downstream signaling in human chondrosarcomas identifies
Yi-Xiang Zhang1, Jolieke G van Oosterwijk, Ewa Sicinska
1Ludwig Center at Dana-Farber/Harvard and Center for Sarcoma and Bone Oncology, Department of Medical Oncology, Harvard Medical School, Boston, Massachusetts 02215, USA.
Purpose:
Chondrosarcomas are notoriously resistant to cytotoxic chemotherapeutic agents. We sought to identify critical signaling pathways that contribute to their survival and proliferation, and which may provide potential targets for rational therapeutic interventions.
Experimental Design:
Activation of receptor tyrosine kinases (RTK) was surveyed using phospho-RTK arrays. S6 phosphorylation and NRAS mutational status were examined in chondrosarcoma primary tumor tissues. siRNA or small-molecule inhibitors against RTKs or downstream signaling proteins were applied to chondrosarcoma cells and changes in biochemical signaling, cell cycle, and cell viability were determined. In vivo antitumor activity of BEZ235, a phosphoinositide 3-kinase (PI3K)/mTOR inhibitor, was evaluated in a chondrosarcoma xenograft model.
Results:
Several RTKs were identified as critical mediators of cell growth, but the RTK dependencies varied among cell lines. In exploration of downstream signaling pathways, strong S6 phosphorylation was found in 69% of conventional chondrosarcomas and 44% of dedifferentiated chondrosarcomas. Treatment with BEZ235 resulted in dramatic reduction in the growth of all chondrosarcoma cell lines. Tumor growth was similarly inhibited in a xenograft model of chondrosarcoma. In addition, chondrosarcoma cells with an NRAS mutation were sensitive to treatment with a mitogen-activated protein kinase/extracellular signal-regulated kinase kinase (MEK) inhibitor. Functional NRAS mutations were found in 12% of conventional central chondrosarcomas.
Conclusions:
RTKs are commonly activated in chondrosarcoma, but because of their considerable heterogeneity, targeted inhibition of the PI3K/mTOR pathway represents a rational therapeutic strategy. Chondrosarcomas with NRAS mutations may benefit from treatment with MEK inhibitors.
Insights
Chondrosarcomas are resistant to chemotherapy. Targeting the PI3K/mTOR pathway with BEZ235 shows promise for treating these tumors. NRAS-mutated chondrosarcomas may respond to MEK inhibitors.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Chondrosarcomas exhibit resistance to conventional cytotoxic chemotherapy.
- Identifying novel therapeutic targets is crucial for improving patient outcomes.
Purpose of the Study:
- To identify critical signaling pathways driving chondrosarcoma survival and proliferation.
- To explore potential therapeutic targets for rational drug development.
Main Methods:
- Surveyed receptor tyrosine kinase (RTK) activation using phospho-RTK arrays.
- Assessed S6 phosphorylation and NRAS mutational status in chondrosarcoma tissues.
- Utilized siRNA and small-molecule inhibitors in chondrosarcoma cell lines and a xenograft model.
Main Results:
- RTK activation was common but heterogeneous across chondrosarcoma cell lines.
- Strong S6 phosphorylation was observed in 69% of conventional and 44% of dedifferentiated chondrosarcomas.
- BEZ235 (a PI3K/mTOR inhibitor) significantly reduced chondrosarcoma cell growth and tumor xenografts.
- Chondrosarcoma cells with NRAS mutations responded to MEK inhibitors, found in 12% of conventional central chondrosarcomas.
Conclusions:
- Targeted inhibition of the PI3K/mTOR pathway is a rational therapeutic strategy for chondrosarcoma.
- Chondrosarcomas with NRAS mutations may benefit from MEK inhibitor treatment.
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