Identification of herpesvirus proteins that contribute to G1/S arrest

Patrick Paladino1, Edyta Marcon, Jack Greenblatt

  • 1Department of Molecular Genetics, University of Toronto, Toronto, Canada.

Journal of Virology
|February 7, 2014
PubMed
Abstract

Insights

Herpesviruses induce cell cycle arrest using multiple proteins, including capsid components. A novel screening identified BGLF2, a herpesvirus protein that elevates p21 levels by interacting with host proteins NEK9 and GMIP.

Area of Science:

  • Virology
  • Cell Biology
  • Molecular Biology

Background:

  • Herpesvirus lytic infection causes cell cycle arrest at G1/S.
  • Viral proteins are responsible for this cell cycle modulation.
  • Limited understanding of which viral proteins contribute to G1/S arrest.

Purpose of the Study:

  • Identify herpesvirus proteins that induce G1/S cell cycle arrest.
  • Investigate the mechanisms by which these proteins modulate cell cycle regulators.
  • Determine the role of specific Epstein-Barr virus (EBV) proteins in cell cycle control.

Main Methods:

  • Screened over 200 proteins from HSV-1, HCMV, and EBV using Fucci cells.
  • Assessed G1/S transition effects of viral proteins.
  • Verified cell cycle effects of selected EBV proteins on p53 and p21.
  • Performed proteomic analysis to identify BGLF2 interacting proteins.

Main Results:

  • Identified tegument, early, and capsid proteins from all three viruses that induce G1/S arrest.
  • Two EBV replication proteins (BORF2, BMRF1) induced p53.
  • EBV tegument protein BGLF2 induced p21 independently of p53.
  • BGLF2 interacts with NEK9 and GMIP, host proteins involved in p21 regulation.

Conclusions:

  • Multiple herpesvirus proteins, including capsid components, contribute to G1/S arrest.
  • BGLF2 induces p21 by interfering with NEK9 and GMIP functions.
  • Incoming viral capsids may play a role in modulating cellular processes.