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Updated: Apr 13, 2026

Immunofluorescence Imaging of DNA Damage and Repair Foci in Human Colon Cancer Cells
Published on: June 9, 2020
DNA damage in cancer therapeutics: a boon or a curse?
1Adult Cancer Program, Lowy Cancer Research Centre and Prince of Wales Hospital, UNSW Medicine, University of New South Wales, Sydney, Australia. Translational Cancer Research Network, University of New South Wales, Sydney, Australia. a.khanna@unsw.edu.au.
Abstract:
Millions of DNA-damaging lesions occur every day in each cell of our bodies due to various stresses. The failure to detect and accurately repair these lesions can give rise to cells with high levels of endogenous DNA damage, deleterious mutations, or genomic aberrations. Such genomic instability can lead to the activation of specific signaling pathways, including the DNA damage response (DDR) pathway. Constitutive activation of DDR proteins has been observed in human tumor specimens from different cancer stages, including precancerous and metastatic cancers, although not in normal tissues. The tumor-suppressive role of DDR activity during the premalignant stage has been studied, and strong evidence is emerging for an oncogenic role for DDR proteins such as DNA-PK and CHK1 during the later stages of tumor development. However, the majority of current cancer therapies induce DNA damage, potentially exacerbating protumorigenic genomic instability and enabling the development of resistance. Therefore, elucidating the molecular basis of DNA damage-mediated genomic instability and its role in tumorigenesis is critical. Finally, I discuss the potential existence of distinct DNA damage thresholds at various stages of tumorigenesis and what the ramifications of such thresholds would be, including the ambiguous role of the DDR pathway in human cancers, therapy-induced malignancies, and enhanced therapies.
Insights
Daily DNA damage is repaired by the DNA damage response (DDR) pathway. Aberrant DDR signaling contributes to cancer, but its role shifts from tumor suppression to oncogenesis, impacting cancer therapies.
Area of Science:
- Molecular Biology
- Genetics
- Cancer Research
Background:
- Cells accumulate millions of DNA-damaging lesions daily from endogenous and exogenous stresses.
- Failure in DNA repair leads to genomic instability, mutations, and aberrations.
- Genomic instability activates signaling pathways like the DNA damage response (DDR).
Purpose of the Study:
- To elucidate the molecular basis of DNA damage-mediated genomic instability in tumorigenesis.
- To explore the dual role of DDR proteins in cancer development and progression.
- To discuss the implications of DNA damage thresholds in cancer and therapy.
Main Methods:
- Review of existing literature on DNA damage, repair pathways, and cancer biology.
- Analysis of the role of DDR proteins (e.g., DNA-PK, CHK1) in different cancer stages.
- Discussion of the impact of cancer therapies on genomic instability.
Main Results:
- Constitutive DDR activation is a hallmark of human tumors, absent in normal tissues.
- DDR activity exhibits a tumor-suppressive role in early premalignant stages.
- Emerging evidence suggests an oncogenic role for DDR proteins in later tumor development.
Conclusions:
- Understanding DNA damage and DDR is critical for cancer therapy.
- Cancer therapies inducing DNA damage may paradoxically promote instability and resistance.
- Distinct DNA damage thresholds may exist across tumorigenesis, influencing DDR's role and therapeutic outcomes.
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