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Silencing of BRCA2 to Identify Novel BRCA2-regulated Biological Functions in Cultured Human Cells
Published on: August 12, 2015
BRCA1-deficient mammary tumor cells are dependent on EZH2 expression and sensitive to Polycomb Repressive Complex
Julian Puppe1, Rinske Drost, Xiaoling Liu
1Molecular Genetics and Cancer Genomics Centre, Netherlands Cancer Institute, Plesmanlaan 121, 1066 CX, Amsterdam, The Netherlands. Julianpuppe@gmx.de
Introduction:
Treatment of breast cancer is becoming more individualized with the recognition of tumor subgroups that respond differently to available therapies. Breast cancer 1 gene (BRCA1)-deficient tumors are usually of the basal subtype and associated with poor survival rates, highlighting the need for more effective therapy.
Methods:
We investigated a mouse model that closely mimics breast cancer arising in BRCA1-mutation carriers to better understand the molecular mechanism of tumor progression and tested whether targeting of the Polycomb-group protein EZH2 would be a putative therapy for BRCA1-deficient tumors.
Results:
Gene expression analysis demonstrated that EZH2 is overexpressed in BRCA1-deficient mouse mammary tumors. By immunohistochemistry we show that an increase in EZH2 protein levels is also evident in tumors from BRCA1-mutation carriers. EZH2 is responsible for repression of genes driving differentiation and could thus be involved in the undifferentiated phenotype of these tumors. Importantly, we show that BRCA1-deficient cancer cells are selectively dependent on their elevated EZH2 levels. In addition, a chemical inhibitor of EZH2, 3-deazaneplanocin A (DZNep), is about 20-fold more effective in killing BRCA1-deficient cells compared to BRCA1-proficient mammary tumor cells.
Conclusions:
We demonstrate by specific knock-down experiments that EZH2 overexpression is functionally relevant in BRCA1-deficient breast cancer cells. The effectiveness of a small molecule inhibitor indicates that EZH2 is a druggable target. The overexpression of EZH2 in all basal-like breast cancers warrants further investigation of the potential for targeting the genetic make-up of this particular breast cancer type.
Insights
Targeting the EZH2 protein shows promise for treating BRCA1-deficient breast cancers. This approach is significantly more effective in killing cancer cells with BRCA1 mutations, offering a potential new therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Breast cancer treatment is increasingly personalized based on tumor subgroups.
- Breast cancer 1 gene (BRCA1)-deficient tumors, often basal subtype, have poor survival rates.
- There is a critical need for more effective therapies for BRCA1-deficient breast cancer.
Purpose of the Study:
- To investigate a mouse model of BRCA1-mutation-associated breast cancer.
- To understand the molecular mechanisms of tumor progression in BRCA1-deficient tumors.
- To evaluate targeting the Polycomb-group protein EZH2 as a potential therapy.
Main Methods:
- Utilized a mouse model mimicking BRCA1-mutation carrier breast cancer.
- Performed gene expression analysis and immunohistochemistry.
- Tested the efficacy of the EZH2 inhibitor 3-deazaneplanocin A (DZNep).
Main Results:
- EZH2 was overexpressed in BRCA1-deficient mouse mammary tumors and human tumors from carriers.
- BRCA1-deficient cells showed selective dependence on elevated EZH2 levels.
- The EZH2 inhibitor DZNep was 20-fold more effective against BRCA1-deficient cells.
Conclusions:
- EZH2 overexpression is functionally important in BRCA1-deficient breast cancer cells.
- EZH2 is a druggable target, as demonstrated by the small molecule inhibitor's effectiveness.
- Targeting EZH2 warrants further investigation for basal-like breast cancers.
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