Related Experiment Video
Updated: Jan 26, 2026

Generation of Recombinant Influenza Virus from Plasmid DNA
Published on: August 3, 2010
Small size, big impact: how studies of small DNA tumour viruses revolutionized biology
11 Department of Genetics, Yale School of Medicine , PO Box 208005, New Haven, CT 06520-8005 , USA.
Abstract:
Intense study of three families of small tumour viruses with double-stranded DNA genomes, carried out over 50 years, has had a profound impact on biology. The polyomaviruses and papillomaviruses have circular DNA genomes of approximately 5000 and approximately 8000 base-pairs, respectively, and thus encode only a handful of proteins. Adenoviruses have a 32 000-base-pair linear DNA genome, still far smaller than the three billion-base-pair human genome. Members of all three virus families can transform cultured cells to tumorigenicity and cause tumours in experimental animals. Several human papillomaviruses (HPV) and at least one polyomavirus are oncogenic in humans. Early analysis of these viruses, particularly the polyomavirus SV40, led to the development of many powerful experimental tools, including restriction mapping, site-directed mutagenesis, gene transfer, genome-wide sequencing and recombinant DNA. These tools have since been refined and used to study cellular genes, revolutionizing our understanding of biology. These tools were also applied to the viruses themselves. Analysis of the virus life cycle and the effect of these viruses on cells yielded important new insights into many aspects of gene expression, DNA replication, cell biology and carcinogenesis. These studies have also led to vaccination strategies to prevent infection and cancer in humans. This article is part of the theme issue 'Silent cancer agents: multi-disciplinary modelling of human DNA oncoviruses'.
Insights
Small DNA tumor viruses, like polyomaviruses and papillomaviruses, have significantly advanced biological research. Studying these oncogenic viruses led to crucial molecular biology tools and cancer prevention strategies.
Area of Science:
- Molecular Biology
- Virology
- Oncology
Background:
- Small DNA tumor viruses, including polyomaviruses, papillomaviruses, and adenoviruses, possess double-stranded DNA genomes.
- These viruses can induce cell transformation and tumors in experimental models, with some human papillomaviruses (HPV) and polyomaviruses being oncogenic in humans.
Purpose of the Study:
- To highlight the profound impact of studying small DNA tumor viruses on biological sciences.
- To review the development of experimental tools and insights gained from analyzing these viruses.
Main Methods:
- Review of 50 years of research on polyomaviruses, papillomaviruses, and adenoviruses.
- Analysis of viral genomes, life cycles, and cellular effects.
- Examination of the development and application of molecular biology techniques.
Main Results:
- The study of these viruses spurred the creation of essential research tools like restriction mapping, gene transfer, and DNA sequencing.
- Understanding viral mechanisms provided key insights into gene expression, DNA replication, cell biology, and carcinogenesis.
- Research has paved the way for vaccination strategies against virus-associated cancers.
Conclusions:
- Small DNA tumor viruses have been instrumental in advancing fundamental biological knowledge and developing critical research methodologies.
- Continued study of these viruses contributes to cancer prevention and treatment strategies.
Related Concept Videos
What are Viruses?
What is Conservation Biology?
Recombinant DNA
Impact of Groups on Groups
Genome Size and the Evolution of New Genes
Complementary DNA

