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Evaluating the Effectiveness of Cancer Drug Sensitization In Vitro and In Vivo
Published on: February 6, 2015
BRCA1/ATF1-Mediated Transactivation is Involved in Resistance to PARP Inhibitors and Cisplatin
Shino Endo1,2, Yuki Yoshino1,2,3, Matsuyuki Shirota4
1Department of Cancer Biology, Institute of Aging, Development, and Cancer, Tohoku University, Sendai, Japan.
Abstract:
Homologous recombination (HR)-deficient cells are sensitive to PARP inhibitors through a synthetic lethal effect. We previously developed an HR activity assay named Assay of Site-Specific HR Activity (ASHRA). Here, we evaluated the HR activity of 30 missense variants of BRCA1 by ASHRA and found that several BRCA1 variants showed intermediate HR activity, which was not clearly discerned by our previous analyses using a conventional method. HR activity measured by ASHRA was significantly correlated with sensitivity to olaparib. However, cells expressing the severely HR-deficient BRCA1-C61G variant were resistant to olaparib, and resistance was dependent on high expression of activating transcription factor 1 (ATF1), which binds to BRCA1 and activates the transcription of target genes to regulate cell proliferation. The BRCA1-C61G variant bound to ATF1 and stimulated ATF1-mediated transactivation similar to wild-type BRCA1. High expression of ATF1 conferred resistance to olaparib and cisplatin activating BRCA1/ATF1-mediated transcription without affecting HR activity in BRCA2-knockdown or RAD51-knockdown cells, but not in BRCA1-knockdown cells. These results suggest that ASHRA is a useful method to evaluate HR activity in cells and to predict the sensitivity to PARP inhibitors. The expression level of ATF1 might be an important biomarker of the effect of PARP inhibitors and platinum agents on HR-deficient tumors with the BRCA1-C61G variant or alteration of non-BRCA1 HR factors such as BRCA2 and RAD51.
Significance:
ASHRA could evaluate HR activity in cells and predict the sensitivity to PARP inhibitors. High expression level of ATF1 may predict the resistance of BRCAness tumors with alterations of non-BRCA1 HR factors to PARP inhibitors and platinum agents.
Insights
The Assay of Site-Specific HR Activity (ASHRA) effectively measures homologous recombination (HR) activity and predicts PARP inhibitor sensitivity. High activating transcription factor 1 (ATF1) expression can indicate resistance in certain HR-deficient tumors.
Area of Science:
- Molecular Biology
- Cancer Genetics
- Pharmacogenomics
Background:
- Homologous recombination (HR) deficiency in cancer cells leads to synthetic lethality with PARP inhibitors.
- Previous methods struggled to precisely quantify HR activity for certain BRCA1 variants.
- The Assay of Site-Specific HR Activity (ASHRA) was developed to assess HR function.
Purpose of the Study:
- To evaluate the HR activity of 30 BRCA1 missense variants using ASHRA.
- To correlate ASHRA-measured HR activity with sensitivity to the PARP inhibitor olaparib.
- To investigate the role of activating transcription factor 1 (ATF1) in mediating resistance to PARP inhibitors.
Main Methods:
- Utilized ASHRA to measure HR activity in cells with various BRCA1 variants.
- Correlated HR activity with cellular sensitivity to olaparib.
- Assessed the impact of ATF1 expression levels on drug resistance in HR-deficient cells, including BRCA1, BRCA2, and RAD51 knockdown models.
Main Results:
- ASHRA identified intermediate HR activity in several BRCA1 variants previously difficult to classify.
- ASHRA-measured HR activity strongly correlated with olaparib sensitivity.
- The BRCA1-C61G variant, despite being HR-deficient, conferred resistance to olaparib when ATF1 expression was high, through ATF1-mediated transcriptional activation.
- High ATF1 expression conferred resistance to olaparib and cisplatin in BRCA2- or RAD51-knockdown cells, but not in BRCA1-knockdown cells.
Conclusions:
- ASHRA is a valuable tool for assessing HR activity and predicting PARP inhibitor response.
- ATF1 expression levels may serve as a predictive biomarker for PARP inhibitor and platinum agent efficacy in HR-deficient tumors, particularly those with BRCA1-C61G or alterations in other HR factors.
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