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Published on: September 12, 2019
Polyomavirus tumorantigens have a profound effect on gene expression in mouse fibroblasts
Britta Klucky1, Birgit Koch, Martin Radolf
1Institute of Medical Biochemistry, Division of Molecular Biology, Medical University of Vienna, Dr. Bohrgasse 9, A-1030 Vienna, Austria.
Abstract:
Polyomavirus (Py) large and small tumorantigens together are competent to induce S phase in growth-arrested mouse fibroblasts. The capacity of the large tumorantigen to bind the pocket proteins, pRB, p130 and p107, is important for the transactivation of DNA synthesis enzymes and the cyclins E and A, while the interference of small tumorantigen with protein phosphatase PP2A causes a destabilization of the cdk2 inhibitor p27, and thus leads to strong cyclin E- and cyclin A-dependent cdk2 activity. Py small tumorantigen, in addition, is able to transactivate cyclin A. Hence, this protein might have a much wider effect on gene expression in arrested mouse fibroblasts than hitherto suspected. This may have a profound part in the known capacity of Py to form tumors in mice. Therefore, it was interesting to gain an insight into the spectrum of transcriptional deregulation by Py tumorantigens. Accordingly, we performed microarray analysis of quiescent mouse fibroblasts in the absence and presence of small or large tumorantigen. We found that the viral proteins can induce or repress a great variety of genes beyond those involved in the S phase induction and DNA synthesis. The results of the microarray analysis were confirmed for selected genes by several methods, including real-time PCR. Interestingly, a mutation of the binding site for pocket proteins in case of LT and for PP2A in case of ST has a variable effect on the deregulation of genes by the viral proteins depending on the gene in question. In fact, some genes are transactivated by LT as well as ST completely independent of an interaction with their major cellular targets, pocket proteins and PP2A, respectively.
Insights
Polyomavirus tumor antigens (TAs) reprogram cell cycles and affect gene expression. This study reveals viral TAs deregulate numerous genes beyond cell cycle control, impacting tumor formation.
Area of Science:
- Molecular Biology
- Virology
- Cell Biology
Background:
- Polyomavirus (Py) tumor antigens (TAs) induce S phase in quiescent fibroblasts.
- Large tumor antigen (LT) binds pocket proteins (pRB, p130, p107) activating DNA synthesis and cyclins.
- Small tumor antigen (ST) interferes with protein phosphatase PP2A, destabilizing p27 and activating CDK2.
Purpose of the Study:
- To investigate the transcriptional deregulation spectrum induced by Py TAs in mouse fibroblasts.
- To understand the broader impact of Py TAs on gene expression beyond cell cycle control.
- To explore the role of TA interactions with cellular targets in gene deregulation.
Main Methods:
- Microarray analysis of quiescent mouse fibroblasts with and without Py ST or LT.
- Validation of microarray results using real-time PCR and other methods.
- Analysis of mutant TAs with altered binding sites for pocket proteins (LT) and PP2A (ST).
Main Results:
- Py TAs induce or repress a wide array of genes beyond those regulating S phase and DNA synthesis.
- Gene deregulation by LT and ST is partially independent of their interaction with pocket proteins and PP2A, respectively.
- Mutational analysis revealed variable effects on gene deregulation depending on the specific gene and TA interaction.
Conclusions:
- Py TAs exert a more extensive influence on cellular gene expression than previously understood.
- The observed transcriptional deregulation contributes to Polyomavirus's tumor-forming capacity in mice.
- Viral TAs can modulate gene expression through mechanisms independent of their canonical interactions with cellular proteins.
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