NF-κB Inhibits Gammaherpesvirus Lytic Replication

Author:

Brown Helen J.1,Song Moon Jung1,Deng Hongyu1,Wu Ting-Ting1,Cheng Genhong2,Sun Ren13452

Affiliation:

1. Department of Molecular and Medical Pharmacology

2. Department of Microbiology, Immunology and Molecular Genetics, University of California at Los Angeles, Los Angeles, California 90095

3. Molecular Biology Institute

4. Dental Research Institute

5. Jonsson Comprehensive Cancer Center

Abstract

ABSTRACT Nasopharyngeal carcinoma, Kaposi's sarcoma, and B-cell lymphomas are human malignancies associated with gammaherpesvirus infections. Members of this virus family are characterized by their ability to establish latent infections in lymphocytes. The latent viral genome expresses very few gene products. The infected cells are therefore poorly recognized by the host immune system, allowing the virus to persist for long periods of time. We sought to identify the cell-specific factors that allow these viruses to redirect their life cycle from productive replication to latency. We find that the cellular transcription factor NF-κB can regulate this process. Epithelial cells and fibroblasts support active (lytic) gammaherpesvirus replication and have low NF-κB activity. However, overexpression of NF-κB in these cells inhibits the replication of the gammaherpesvirus murine herpesvirus 68 (MHV68). In addition, overexpression of NF-κB inhibits the activation of lytic promoters from MHV68 and human gammaherpesviruses Kaposi's sarcoma-associated herpesvirus (KSHV) and Epstein-Barr virus (EBV). In lymphocytes latently infected with KSHV or EBV, the level of NF-κB activity is high, and treatment of these cells with an NF-κB inhibitor leads to lytic protein synthesis consistent with virus reactivation. These results suggest that high levels of NF-κB can inhibit gammaherpesvirus lytic replication and may therefore contribute to the establishment and maintenance of viral latency in lymphocytes. They also suggest that NF-κB may be a novel target for the disruption of virus latency and therefore the treatment of gammaherpesvirus-related malignancies.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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