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Integrative Kinome Profiling Identifies mTORC1/2 Inhibition as Treatment Strategy in Ovarian Clear Cell Carcinoma
Joseph J Caumanns1, Katrien Berns2, G Bea A Wisman1
1Department of Gynecologic Oncology, Cancer Research Center Groningen, University Medical Center Groningen, University of Groningen, Groningen, the Netherlands.
Abstract:
Purpose: Advanced-stage ovarian clear cell carcinoma (OCCC) is unresponsive to conventional platinum-based chemotherapy. Frequent alterations in OCCC include deleterious mutations in the tumor suppressor ARID1A and activating mutations in the PI3K subunit PIK3CA In this study, we aimed to identify currently unknown mutated kinases in patients with OCCC and test druggability of downstream affected pathways in OCCC models.Experimental Design: In a large set of patients with OCCC (n = 124), the human kinome (518 kinases) and additional cancer-related genes were sequenced, and copy-number alterations were determined. Genetically characterized OCCC cell lines (n = 17) and OCCC patient-derived xenografts (n = 3) were used for drug testing of ERBB tyrosine kinase inhibitors erlotinib and lapatinib, the PARP inhibitor olaparib, and the mTORC1/2 inhibitor AZD8055.Results: We identified several putative driver mutations in kinases at low frequency that were not previously annotated in OCCC. Combining mutations and copy-number alterations, 91% of all tumors are affected in the PI3K/AKT/mTOR pathway, the MAPK pathway, or the ERBB family of receptor tyrosine kinases, and 82% in the DNA repair pathway. Strong p-S6 staining in patients with OCCC suggests high mTORC1/2 activity. We consistently found that the majority of OCCC cell lines are especially sensitive to mTORC1/2 inhibition by AZD8055 and not toward drugs targeting ERBB family of receptor tyrosine kinases or DNA repair signaling. We subsequently demonstrated the efficacy of mTORC1/2 inhibition in all our unique OCCC patient-derived xenograft models.Conclusions: These results propose mTORC1/2 inhibition as an effective treatment strategy in OCCC. Clin Cancer Res; 24(16); 3928-40. ©2018 AACR.
Insights
Advanced-stage ovarian clear cell carcinoma (OCCC) is resistant to chemotherapy. Targeting mTORC1/2 shows promise, as this study identified high mTORC1/2 activity and sensitivity to mTORC1/2 inhibition in OCCC models.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Advanced-stage ovarian clear cell carcinoma (OCCC) exhibits resistance to conventional platinum-based chemotherapy.
- Key genetic alterations in OCCC include mutations in ARID1A and PIK3CA.
- Identifying novel therapeutic targets is crucial for improving OCCC treatment outcomes.
Purpose of the Study:
- To identify previously unknown mutated kinases in OCCC patients.
- To investigate the druggability of downstream signaling pathways affected in OCCC.
- To evaluate potential therapeutic strategies for advanced-stage OCCC.
Main Methods:
- Sequencing of the human kinome and cancer-related genes in 124 OCCC patients.
- Analysis of copy-number alterations in OCCC tumors.
- Drug sensitivity testing of OCCC cell lines and patient-derived xenografts using targeted inhibitors.
Main Results:
- Several low-frequency, previously unannotated driver kinase mutations were identified in OCCC.
- The PI3K/AKT/mTOR, MAPK, and ERBB pathways, as well as DNA repair pathways, are frequently altered in OCCC.
- OCCC cell lines and xenografts demonstrated significant sensitivity to mTORC1/2 inhibition.
Conclusions:
- mTORC1/2 inhibition represents a promising therapeutic strategy for ovarian clear cell carcinoma.
- Targeting the mTORC1/2 pathway could overcome chemotherapy resistance in OCCC.
- Further clinical investigation of mTORC1/2 inhibitors in OCCC is warranted.
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