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Updated: May 19, 2026

Two- and Three-Dimensional Live Cell Imaging of DNA Damage Response Proteins
Published on: September 28, 2012
Persistent DNA damage caused by low levels of mitomycin C induces irreversible cell senescence
Elise McKenna1, Frank Traganos, Hong Zhao
1Brander Cancer Research Institute, Department of Pathology, New York Medical College, Valhalla, NY, USA.
Abstract:
Mutations of oncogenes and tumor suppressor genes which activate mTOR through several downstream signaling pathways are common to cancer. Activation of mTOR when combined with inhibition of cell cycle progression or DNA replication stress has previously been shown to promote cell senescence. In the present study, we examined the conditions under which human non-small cell lung carcinoma A549 cells can undergo senescence when treated with the DNA alkylating agent mitomycin C (MMC). While exposure of A549 cells to 0.1 or 0.5 µg/ml of MMC led to their arrest in S phase of the cell cycle and subsequent apoptosis, exposure to 0.01 or 0.02 µg/ml for 6 d resulted in induction of cell senescence and near total (0.01 µg/ml) or total (0.02 µg/ml) elimination of their reproductive potential. During exposure to these low concentrations of MMC, the cells demonstrated evidence of DNA replication stress manifested by expression of γH2AX, p21 (WAF1) and a very low level of EdU incorporation into DNA. The data are consistent with the notion that enduring DNA replication stress in cells known to have activated oncogenes leads to their senescence. It is reasonable to expect that tumors having constitutive activation of oncogenes triggering mTOR signaling may be particularly predisposed to undergoing senescence following prolonged treatment with low doses of DNA damaging drugs.
Insights
Low-dose mitomycin C induces senescence in non-small cell lung cancer cells by causing DNA replication stress. This suggests tumors with activated oncogenes may be sensitive to prolonged DNA damaging drug treatments.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Mutations in oncogenes and tumor suppressor genes frequently activate mTOR signaling in cancer.
- mTOR activation combined with cell cycle inhibition or DNA replication stress can induce cellular senescence.
Purpose of the Study:
- To investigate the conditions for inducing senescence in human non-small cell lung carcinoma (NSCLC) A549 cells using the DNA alkylating agent mitomycin C (MMC).
Main Methods:
- Treatment of A549 cells with varying concentrations of mitomycin C (MMC).
- Assessment of cell cycle progression, apoptosis, senescence markers (e.g., γH2AX, p21), and DNA replication (EdU incorporation).
Main Results:
- Low doses of MMC (0.01-0.02 µg/ml) induced cell senescence and eliminated reproductive potential in A549 cells.
- Higher doses of MMC (0.1-0.5 µg/ml) led to S-phase arrest and apoptosis.
- Low-dose MMC treatment resulted in DNA replication stress, evidenced by γH2AX and p21 expression.
Conclusions:
- Enduring DNA replication stress in cancer cells with activated oncogenes promotes senescence.
- Tumors with constitutively active mTOR signaling may be susceptible to senescence induction by prolonged low-dose DNA damaging drugs.
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