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Ataxia telangiectasia mutated (ATM) inhibition transforms human mammary gland epithelial cells
Stefano J Mandriota1, Raphaële Buser, Laurence Lesne
1Center of Oncology, Faculty of Medicine, University of Geneva, Rue Michel-Servet 1, 1206 Geneva, Switzerland. stefano.mandriota@unige.ch
Abstract:
Carriers of mutations in the cell cycle checkpoint protein kinase ataxia telangiectasia mutated (ATM), which represent 1-2% of the general population, have an increased risk of breast cancer. However, experimental evidence that ATM deficiency contributes to human breast carcinogenesis is lacking. We report here that in MCF-10A and MCF-12A cells, which are well established normal human mammary gland epithelial cell models, partial or almost complete stable ATM silencing or pharmacological inhibition resulted in cellular transformation, genomic instability, and formation of dysplastic lesions in NOD/SCID mice. These effects did not require the activity of exogenous DNA-damaging agents and were preceded by an unsuspected and striking increase in cell proliferation also observed in primary human mammary gland epithelial cells. Increased proliferation correlated with a dramatic, transient, and proteasome-dependent reduction of p21(WAF1/CIP1) and p27(KIP1) protein levels, whereas little or no effect was observed on p21(WAF1/CIP1) or p27(KIP1) mRNAs. p21(WAF1/CIP1) silencing also increased MCF-10A cell proliferation, thus identifying p21(WAF1/CIP1) down-regulation as a mediator of the proliferative effect of ATM inhibition. Our findings provide the first experimental evidence that ATM is a human breast tumor suppressor. In addition, they mirror the sensitivity of ATM tumor suppressor function and unveil a new mechanism by which ATM might prevent human breast tumorigenesis, namely a direct inhibitory effect on the basal proliferation of normal mammary epithelial cells.
Insights
Mutations in ataxia telangiectasia mutated (ATM) increase breast cancer risk. This study shows ATM deficiency causes cellular transformation and genomic instability, revealing ATM as a breast tumor suppressor.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Carriers of ataxia telangiectasia mutated (ATM) mutations have a higher breast cancer risk.
- Experimental evidence linking ATM deficiency to human breast carcinogenesis is limited.
Purpose of the Study:
- To investigate the role of ATM in human breast carcinogenesis.
- To determine if ATM deficiency contributes to breast cancer development in experimental models.
Main Methods:
- ATM was silenced or inhibited in normal human mammary epithelial cell lines (MCF-10A, MCF-12A).
- Cellular transformation, genomic instability, and tumor formation were assessed in NOD/SCID mice.
- Changes in cell proliferation and protein/mRNA levels of cell cycle inhibitors (p21, p27) were analyzed.
Main Results:
- ATM silencing/inhibition induced cellular transformation, genomic instability, and dysplastic lesions without exogenous DNA damage.
- A significant increase in cell proliferation was observed, mediated by proteasome-dependent reduction of p21(WAF1/CIP1) and p27(KIP1) proteins.
- p21(WAF1/CIP1) down-regulation was identified as a key mediator of ATM inhibition-induced proliferation.
Conclusions:
- ATM acts as a tumor suppressor in the human breast.
- ATM deficiency promotes breast tumorigenesis by increasing basal proliferation of mammary epithelial cells.
- This study provides the first experimental evidence for ATM's role in preventing human breast cancer.
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