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Updated: Oct 22, 2025

Silencing of BRCA2 to Identify Novel BRCA2-regulated Biological Functions in Cultured Human Cells
Published on: August 12, 2015
Synergistic targeting of BRCA1 mutated breast cancers with PARP and CDK2 inhibition
Diar Aziz1,2,3,4, Neil Portman5,6, Kristine J Fernandez5
1Centre for Translational Pathology, Department of Pathology and Department of Surgery, University of Melbourne, Parkville, VIC, Australia.
Abstract:
Basal-like breast cancers (BLBC) are aggressive breast cancers that respond poorly to targeted therapies and chemotherapies. In order to define therapeutically targetable subsets of BLBC we examined two markers: cyclin E1 and BRCA1 loss. In high grade serous ovarian cancer (HGSOC) these markers are mutually exclusive, and define therapeutic subsets. We tested the same hypothesis for BLBC. Using a BLBC cohort enriched for BRCA1 loss, we identified convergence between BRCA1 loss and high cyclin E1 protein expression, in contrast to HGSOC in which CCNE1 amplification drives increased cyclin E1. In cell lines, BRCA1 loss was associated with stabilized cyclin E1 during the cell cycle, and BRCA1 siRNA led to increased cyclin E1 in association with reduced phospho-cyclin E1 T62. Mutation of cyclin E1 T62 to alanine increased cyclin E1 stability. We showed that tumors with high cyclin E1/BRCA1 mutation in the BLBC cohort also had decreased phospho-T62, supporting this hypothesis. Since cyclin E1/CDK2 protects cells from DNA damage and cyclin E1 is elevated in BRCA1 mutant cancers, we hypothesized that CDK2 inhibition would sensitize these cancers to PARP inhibition. CDK2 inhibition induced DNA damage and synergized with PARP inhibitors to reduce cell viability in cell lines with homologous recombination deficiency, including BRCA1 mutated cell lines. Treatment of BRCA1 mutant BLBC patient-derived xenograft models with combination PARP and CDK2 inhibition led to tumor regression and increased survival. We conclude that BRCA1 status and high cyclin E1 have potential as predictive biomarkers to dictate the therapeutic use of combination CDK inhibitors/PARP inhibitors in BLBC.
Insights
Aggressive basal-like breast cancers (BLBC) with BRCA1 loss and high cyclin E1 show therapeutic promise. Combining CDK2 and PARP inhibitors led to tumor regression and improved survival in preclinical models.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Basal-like breast cancers (BLBC) are aggressive and resistant to standard treatments.
- Identifying targetable subsets within BLBC is crucial for effective therapy.
Purpose of the Study:
- To investigate the interplay between BRCA1 loss and cyclin E1 expression in BLBC.
- To explore the therapeutic potential of combining CDK2 and PARP inhibitors in BLBC models.
Main Methods:
- Analysis of a BLBC cohort for BRCA1 loss and cyclin E1 expression.
- In vitro studies using cell lines to assess the effects of BRCA1 loss and CDK2 inhibition.
- In vivo studies using patient-derived xenograft models of BRCA1-mutant BLBC.
Main Results:
- BRCA1 loss converges with high cyclin E1 expression in BLBC, unlike in ovarian cancer.
- BRCA1 loss stabilizes cyclin E1, and CDK2 inhibition sensitizes homologous recombination-deficient cells to PARP inhibitors.
- Combination therapy of PARP and CDK2 inhibitors induced tumor regression and improved survival in preclinical BLBC models.
Conclusions:
- BRCA1 status and cyclin E1 expression may serve as predictive biomarkers for BLBC.
- Combination CDK inhibitors and PARP inhibitors represent a potential therapeutic strategy for a subset of BLBC.
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