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Updated: Oct 20, 2025

Visualizing and Quantifying Endonuclease-Based Site-Specific DNA Damage
Published on: August 21, 2021
DNA damage in cancer development: special implications in viral oncogenesis
Meghri Katerji1, Penelope J Duerksen-Hughes1
1Department of Basic Science, Loma Linda University School of Medicine Loma Linda, CA 92354, USA.
Abstract:
DNA lesions arise from a combination of physiological/metabolic sources and exogenous environmental influences. When left unrepaired, these alterations accumulate in the cells and can give rise to mutations that change the function of important proteins (i.e. tumor suppressors, oncoproteins), or cause chromosomal rearrangements (i.e. gene fusions) that also result in the deregulation of key cellular molecules. Progressive acquisition of such genetic changes promotes uncontrolled cell proliferation and evasion of cell death, and hence plays a key role in carcinogenesis. Another less-studied consequence of DNA damage accumulating in the host genome is the integration of oncogenic DNA viruses such as Human papillomavirus, Merkel cell polyomavirus, and Hepatitis B virus. This critical step of viral-induced carcinogenesis is thought to be particularly facilitated by DNA breaks in both viral and host genomes. Therefore, the impact of DNA damage on carcinogenesis is magnified in the case of such oncoviruses via the additional effect of increasing integration frequency. In this review, we briefly present the various endogenous and exogenous factors that cause different types of DNA damage. Next, we discuss the contribution of these lesions in cancer development. Finally, we examine the amplified effect of DNA damage in viral-induced oncogenesis and summarize the limited data existing in the literature related to DNA damage-induced viral integration. To conclude, additional research is needed to assess the DNA damage pathways involved in the transition from viral infection to cancer. Discovering that a certain DNA damaging agent increases the likelihood of viral integration will enable the development of prophylactic and therapeutic strategies designed specifically to prevent such integration, with an ultimate goal of reducing or eliminating these viral-induced malignancies.
Insights
DNA damage from various sources can lead to cancer. DNA breaks also promote oncogenic virus integration, amplifying cancer risk and necessitating new prevention strategies.
Area of Science:
- Molecular Biology
- Genetics
- Oncology
Background:
- DNA damage, from internal or external factors, accumulates and can cause mutations or chromosomal rearrangements.
- These genetic alterations drive uncontrolled cell growth and evasion of cell death, key processes in carcinogenesis.
- DNA damage also facilitates the integration of oncogenic viruses (e.g., HPV, HBV) into the host genome.
Purpose of the Study:
- To review the role of DNA damage in cancer development.
- To examine how DNA damage amplifies viral-induced oncogenesis.
- To highlight the impact of DNA damage on oncogenic viral integration.
Main Methods:
- Literature review of endogenous and exogenous DNA damaging factors.
- Analysis of DNA damage contribution to cancer development.
- Examination of DNA damage effects on viral oncogenesis and integration.
Main Results:
- Accumulated DNA lesions are a significant factor in carcinogenesis.
- DNA damage potentiates the integration of oncogenic viruses, increasing cancer risk.
- Limited data exists on DNA damage-induced viral integration, indicating a need for further research.
Conclusions:
- DNA damage plays a dual role in cancer: direct mutagenesis and enhanced viral integration.
- Understanding DNA damage pathways in viral infections is crucial for cancer prevention.
- Targeting DNA damage to inhibit viral integration could lead to novel prophylactic and therapeutic strategies against viral malignancies.
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