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ATM-depletion in breast cancer cells confers sensitivity to PARP inhibition
Maria Saveria Gilardini Montani1, Andrea Prodosmo, Venturina Stagni
1Experimental Oncology, Regina Elena National Cancer Institute, Via Elio Chianesi, 53-00144 Rome, Italy. soddu@ifo.it.
Background:
Mutations in the DNA damage response (DDR) factors, breast cancer 1 (BRCA1) and BRCA2, sensitize tumor cells to poly(ADP-ribose) polymerase (PARP) inhibitors. The ataxia telangiectasia mutated (ATM) kinase is a key DDR protein whose heterozygous germline mutation is a moderate-risk factor for developing breast cancer. In this study, we examined whether ATM inactivation in breast cancer cell lines confers sensitivity to PARP inhibitors.
Methods:
Wild-type BRCA1/2 breast cancer cells (i.e., MCF-7 and ZR-75-1 lines) were genetically manipulated to downregulate ATM expression then assayed for cytostaticity/cytotoxicity upon treatment with PARP inhibitors, olaparib and iniparib.
Results:
When ATM-depleted cells and their relative controls were treated with olaparib (a competitive PARP-1/2 inhibitor) and iniparib (a molecule originally described as a covalent PARP-1 inhibitor) a different response to the two compounds was observed. ATM-depletion sensitized both MCF-7 and ZR-75-1 cells to olaparib-treatment, as assessed by short and long survival assays and cell cycle profiles. In contrast, iniparib induced only a mild, ATM-dependent cytostatic effect in MCF-7 cells whereas ZR-75-1 cells were sensitive to this drug, independently of ATM inactivation. These latest results might be explained by recent observations indicating that iniparib acts with mechanisms other than PARP inhibition.
Conclusions:
These data indicate that ATM-depletion can sensitize breast cancer cells to PARP inhibition, suggesting a potential in the treatment of breast cancers low in ATM protein expression/activity, such as those arising in mutant ATM heterozygous carriers.
Insights
ATM inactivation sensitizes breast cancer cells to olaparib, a poly(ADP-ribose) polymerase (PARP) inhibitor. This suggests potential therapeutic strategies for breast cancers with low ATM activity, including those in ATM heterozygous carriers.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Mutations in DNA damage response (DDR) factors like BRCA1 and BRCA2 increase sensitivity to PARP inhibitors.
- ATM kinase is a key DDR protein, and its heterozygous germline mutation is a moderate breast cancer risk factor.
Purpose of the Study:
- To investigate if ATM inactivation in breast cancer cell lines leads to sensitivity to PARP inhibitors.
- To explore the therapeutic potential of targeting ATM-deficient breast cancers with PARP inhibitors.
Main Methods:
- Wild-type BRCA1/2 breast cancer cell lines (MCF-7, ZR-75-1) had ATM expression downregulated.
- Cells were treated with PARP inhibitors olaparib and iniparib to assess cytostaticity and cytotoxicity.
Main Results:
- ATM depletion sensitized both cell lines to olaparib, confirmed by survival assays and cell cycle analysis.
- In contrast, iniparib showed a mild, ATM-dependent cytostatic effect in MCF-7 cells, while ZR-75-1 cells were sensitive irrespective of ATM status.
- Differential responses to olaparib and iniparib suggest distinct mechanisms of action, potentially beyond PARP inhibition for iniparib.
Conclusions:
- ATM depletion sensitizes breast cancer cells to PARP inhibition, specifically olaparib.
- This finding suggests a potential treatment strategy for breast cancers with low ATM expression or activity, including those in ATM heterozygous carriers.
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