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.

Oncogene
|May 4, 2004
PubMed

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.