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Updated: Apr 12, 2026

Visualizing and Quantifying Endonuclease-Based Site-Specific DNA Damage
Published on: August 21, 2021
Modulation of DNA damage and repair pathways by human tumour viruses
Robert Hollingworth1, Roger J Grand2
1School of Cancer Sciences, College of Medicine and Dentistry, University of Birmingham, Birmingham B15 2TT, UK. rxh291@student.bham.ac.uk.
Abstract:
With between 10% and 15% of human cancers attributable to viral infection, there is great interest, from both a scientific and clinical viewpoint, as to how these pathogens modulate host cell functions. Seven human tumour viruses have been identified as being involved in the development of specific malignancies. It has long been known that the introduction of chromosomal aberrations is a common feature of viral infections. Intensive research over the past two decades has subsequently revealed that viruses specifically interact with cellular mechanisms responsible for the recognition and repair of DNA lesions, collectively known as the DNA damage response (DDR). These interactions can involve activation and deactivation of individual DDR pathways as well as the recruitment of specific proteins to sites of viral replication. Since the DDR has evolved to protect the genome from the accumulation of deleterious mutations, deregulation is inevitably associated with an increased risk of tumour formation. This review summarises the current literature regarding the complex relationship between known human tumour viruses and the DDR and aims to shed light on how these interactions can contribute to genomic instability and ultimately the development of human cancers.
Insights
Human tumor viruses can disrupt the DNA damage response (DDR), a crucial cellular repair system. This disruption contributes to genomic instability and increases the risk of developing cancers.
Area of Science:
- Oncology
- Virology
- Molecular Biology
Background:
- 10-15% of human cancers are linked to viral infections.
- Seven human tumor viruses are known to cause specific malignancies.
- Chromosomal aberrations are common in viral infections.
Purpose of the Study:
- To review the complex relationship between human tumor viruses and the DNA damage response (DDR).
- To elucidate how viral interactions with the DDR contribute to genomic instability and cancer development.
Main Methods:
- Literature review of current research on human tumor viruses and the DDR.
- Analysis of viral interactions with cellular DNA repair mechanisms.
- Examination of how these interactions affect genomic stability.
Main Results:
- Viruses interact with cellular mechanisms for DNA lesion recognition and repair (DDR).
- Viral interactions can activate or deactivate specific DDR pathways.
- Viruses can recruit proteins to sites of viral replication, impacting DDR.
Conclusions:
- Deregulation of the DDR by tumor viruses is linked to increased cancer risk.
- Understanding virus-DDR interactions is crucial for cancer prevention and treatment.
- These interactions highlight a key mechanism in virus-induced oncogenesis.
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