Related Experiment Video
Updated: Oct 18, 2025

Isolation and Quantification of Epstein-Barr Virus from the P3HR1 Cell Line
Published on: September 28, 2022
PLK1-dependent phosphorylation restrains EBNA2 activity and lymphomagenesis in EBV-infected mice
Xiang Zhang1, Patrick Schuhmachers2, André Mourão3,4
1Research Unit Gene Vectors, Helmholtz Zentrum München, German Research Center for Environmental Health, München, Germany.
Abstract:
While Epstein-Barr virus (EBV) establishes a life-long latent infection in apparently healthy human immunocompetent hosts, immunodeficient individuals are at particular risk to develop lymphoproliferative B-cell malignancies caused by EBV. A key EBV protein is the transcription factor EBV nuclear antigen 2 (EBNA2), which initiates B-cell proliferation. Here, we combine biochemical, cellular, and in vivo experiments demonstrating that the mitotic polo-like kinase 1 (PLK1) binds to EBNA2, phosphorylates its transactivation domain, and thereby inhibits its biological activity. EBNA2 mutants that impair PLK1 binding or prevent EBNA2 phosphorylation are gain-of-function mutants. They exhibit enhanced transactivation capacities, accelerate the proliferation of infected B cells, and promote the development of monoclonal B-cell lymphomas in infected mice. Thus, PLK1 coordinates the activity of EBNA2 to attenuate the risk of tumor incidences in favor of the establishment of latency in the infected but healthy host.
Related Concept Videos
Abnormal Proliferation
The JAK-STAT Signaling Pathway
Negative Regulator Molecules
NF-κB-dependent Signaling Pathway
NF-κB-dependent Signaling Mechanism
The...
Role of Ephrin-Eph Signalling in Intestinal Stem Cell Renewal

