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Comprehensive Pharmacogenomic Profiling of Malignant Pleural Mesothelioma Identifies a Subgroup Sensitive to FGFR
Josine M Quispel-Janssen1, Jitendra Badhai2, Laurel Schunselaar2
1Netherlands Cancer Institute, Amsterdam, the Netherlands. Constantine.alifrangis@UCLH.nhs.uk jm.janssen@nki.nl.
Abstract:
Purpose: Despite intense research, treatment options for patients with mesothelioma are limited and offer only modest survival advantage. We screened a large panel of compounds in multiple mesothelioma models and correlated sensitivity with a range of molecular features to detect biomarkers of drug response.Experimental design: We utilized a high-throughput chemical inhibitor screen in a panel of 889 cancer cell lines, including both immortalized and primary early-passage mesothelioma lines, alongside comprehensive molecular characterization using Illumina whole-exome sequencing, copy-number analysis and Affymetrix array whole transcriptome profiling. Subsequent validation was done using functional assays such as siRNA silencing and mesothelioma mouse xenograft models.Results: A subgroup of immortalized and primary MPM lines appeared highly sensitive to FGFR inhibition. None of these lines harbored genomic alterations of FGFR family members, but rather BAP1 protein loss was associated with enhanced sensitivity to FGFR inhibition. This was confirmed in an MPM mouse xenograft model and by BAP1 knockdown and overexpression in cell line models. Gene expression analyses revealed an association between BAP1 loss and increased expression of the receptors FGFR1/3 and ligands FGF9/18. BAP1 loss was associated with activation of MAPK signaling. These associations were confirmed in a cohort of MPM patient samples.Conclusions: A subgroup of mesotheliomas cell lines harbor sensitivity to FGFR inhibition. BAP1 protein loss enriches for this subgroup and could serve as a potential biomarker to select patients for FGFR inhibitor treatment. These data identify a clinically relevant MPM subgroup for consideration of FGFR therapeutics in future clinical studies. Clin Cancer Res; 24(1); 84-94. ©2017 AACR.
Insights
Mesothelioma treatment is limited. Researchers found that loss of BAP1 protein predicts sensitivity to FGFR inhibitors in mesothelioma, identifying a potential biomarker for targeted therapy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Mesothelioma treatment options are limited, with modest survival benefits.
- Identifying predictive biomarkers for drug response is crucial for effective mesothelioma therapy.
Purpose of the Study:
- To screen compounds for mesothelioma treatment efficacy.
- To identify molecular features correlating with drug sensitivity in mesothelioma.
- To discover potential biomarkers for guiding FGFR inhibitor therapy.
Main Methods:
- High-throughput chemical inhibitor screening across 889 cancer cell lines, including mesothelioma.
- Comprehensive molecular characterization: whole-exome sequencing, copy-number analysis, whole transcriptome profiling.
- Validation using siRNA, mouse xenografts, and patient sample analysis.
Main Results:
- A subset of mesothelioma cell lines showed sensitivity to FGFR inhibition.
- BAP1 protein loss, not FGFR genomic alterations, correlated with FGFR inhibitor sensitivity.
- BAP1 loss was linked to increased FGFR1/3 and FGF9/18 expression and MAPK pathway activation.
Conclusions:
- FGFR inhibition is effective in a subgroup of mesotheliomas.
- BAP1 protein loss serves as a potential predictive biomarker for FGFR inhibitor treatment.
- This finding identifies a clinically relevant mesothelioma subgroup for future FGFR therapeutic studies.
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