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Evaluation of Stem Cell Properties in Human Ovarian Carcinoma Cells Using Multi and Single Cell-based Spheres Assays
Published on: January 3, 2015
ARID1A mutation sensitizes most ovarian clear cell carcinomas to BET inhibitors
Katrien Berns1, Joseph J Caumanns2, E Marielle Hijmans3
1Division of Molecular Carcinogenesis and Oncode Institute, The Netherlands Cancer Institute, Plesmanlaan 121, Amsterdam, 1066 CX, The Netherlands. k.berns@nki.nl.
Abstract:
Current treatment for advanced stage ovarian clear cell cancer is severely hampered by a lack of effective systemic therapy options, leading to a poor outlook for these patients. Sequencing studies revealed that ARID1A is mutated in over 50% of ovarian clear cell carcinomas. To search for a rational approach to target ovarian clear cell cancers with ARID1A mutations, we performed kinome-centered lethality screens in a large panel of ovarian clear cell carcinoma cell lines. Using the largest OCCC cell line panel established to date, we show here that BRD2 inhibition is predominantly lethal in ARID1A mutated ovarian clear cell cancer cells. Importantly, small molecule inhibitors of the BET (bromodomain and extra terminal domain) family of proteins, to which BRD2 belongs, specifically inhibit proliferation of ARID1A mutated cell lines, both in vitro and in ovarian clear cell cancer xenografts and patient-derived xenograft models. BET inhibitors cause a reduction in the expression of multiple SWI/SNF members including ARID1B, providing a potential explanation for the observed lethal interaction with ARID1A loss. Our data indicate that BET inhibition may represent a novel treatment strategy for a subset of ARID1A mutated ovarian clear cell carcinomas.
Insights
Bromodomain and extra terminal (BET) inhibitors show promise for treating advanced ovarian clear cell cancer. Targeting BET proteins is lethal to cancer cells with ARID1A mutations, offering a new therapeutic strategy.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Advanced ovarian clear cell carcinoma (OCCC) lacks effective systemic therapies, resulting in poor patient prognoses.
- ARID1A mutations are found in over 50% of OCCC cases, highlighting a potential therapeutic vulnerability.
Purpose of the Study:
- To identify rational therapeutic targets for ARID1A-mutated OCCC.
- To investigate the efficacy of targeting BRD2 and other BET family proteins in OCCC.
Main Methods:
- Utilized kinome-centered lethality screens on a large panel of OCCC cell lines.
- Administered small molecule BET inhibitors in vitro and in OCCC xenograft/patient-derived xenograft models.
- Analyzed the impact of BET inhibition on SWI/SNF gene expression.
Main Results:
- BRD2 inhibition was predominantly lethal in ARID1A-mutated OCCC cells.
- BET inhibitors specifically suppressed the proliferation of ARID1A-mutated OCCC cell lines in preclinical models.
- BET inhibition led to decreased expression of SWI/SNF members, including ARID1B, suggesting a mechanism for ARID1A loss interaction.
Conclusions:
- BET inhibition represents a potential novel treatment strategy for ARID1A-mutated OCCC.
- Targeting BET proteins offers a promising therapeutic avenue for a significant subset of OCCC patients.
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