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Updated: Jul 26, 2026
Bone Marrow Sampling and Transplants
The murine gammaherpesvirus immediate-early Rta synergizes with IRF4, targeting expression of the viral M1
Brigid M O'Flaherty1, Tanushree Soni1, Brian S Wakeman1
1Department of Microbiology and Immunology, Emory University School of Medicine, Atlanta, Georgia, United States of America; Emory Vaccine Center, Emory University School of Medicine, Atlanta, Georgia, United States of America.
Abstract:
MHV68 is a murine gammaherpesvirus that infects laboratory mice and thus provides a tractable small animal model for characterizing critical aspects of gammaherpesvirus pathogenesis. Having evolved with their natural host, herpesviruses encode numerous gene products that are involved in modulating host immune responses to facilitate the establishment and maintenance of lifelong chronic infection. One such protein, MHV68 M1, is a secreted protein that has no known homologs, but has been shown to play a critical role in controlling virus reactivation from latently infected macrophages. We have previous demonstrated that M1 drives the activation and expansion of Vβ4+ CD8+ T cells, which are thought to be involved in controlling MHV68 reactivation through the secretion of interferon gamma. The mechanism of action and regulation of M1 expression are poorly understood. To gain insights into the function of M1, we set out to evaluate the site of expression and transcriptional regulation of the M1 gene. Here, using a recombinant virus expressing a fluorescent protein driven by the M1 gene promoter, we identify plasma cells as the major cell type expressing M1 at the peak of infection in the spleen. In addition, we show that M1 gene transcription is regulated by both the essential viral immediate-early transcriptional activator Rta and cellular interferon regulatory factor 4 (IRF4), which together potently synergize to drive M1 gene expression. Finally, we show that IRF4, a cellular transcription factor essential for plasma cell differentiation, can directly interact with Rta. The latter observation raises the possibility that the interaction of Rta and IRF4 may be involved in regulating a number of viral and cellular genes during MHV68 reactivation linked to plasma cell differentiation.
Insights
Murine gammaherpesvirus 68 (MHV68) M1 protein is expressed in plasma cells and its gene transcription is regulated by viral Rta and cellular IRF4. This interaction may control viral reactivation.
Area of Science:
- Virology
- Immunology
- Molecular Biology
Background:
- Murine gammaherpesvirus 68 (MHV68) is a small animal model for gammaherpesvirus pathogenesis.
- Herpesviruses encode immune-modulating proteins for chronic infection.
- MHV68 M1 protein is crucial for controlling virus reactivation from macrophages.
Purpose of the Study:
- Investigate the expression site and transcriptional regulation of the MHV68 M1 gene.
- Understand the mechanism controlling M1 expression and its role in viral pathogenesis.
Main Methods:
- Utilized a recombinant MHV68 virus with a fluorescent reporter driven by the M1 promoter.
- Analyzed gene expression in spleen cells during peak infection.
- Investigated the interaction between viral Rta and cellular IRF4.
Main Results:
- Identified plasma cells as the primary M1-expressing cell type in the spleen during peak MHV68 infection.
- Demonstrated that M1 gene transcription is synergistically regulated by viral Rta and cellular IRF4.
- Showed direct interaction between IRF4 and Rta, suggesting a role in regulating viral and cellular genes during reactivation.
Conclusions:
- Plasma cells are a key site for MHV68 M1 expression.
- Viral Rta and cellular IRF4 cooperate to regulate M1 gene transcription.
- The Rta-IRF4 interaction may be critical for MHV68 reactivation and pathogenesis.