ArticlebioRxiv : the preprint server for biology2026
HIGH DOSE GAMMAHERPESVIRUS INFECTION IN MACROPHAGES RESULTS IN INFLAMMATORY MULTIMODAL CELL DEATH.
Article in bioRxiv : the preprint server for biology, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Authors and funding
8 authors.
Funding
Abstract
Human gammaherpesviruses (γHVs) including Epstein-Barr Virus and Kaposi's sarcoma associated herpesvirus are linked to cancer and inflammatory disease development. The outcome of γHV infection is highly regulated by cell type, with macrophages identified as an important early infection target that can also serve as a latency reservoir. Here, we used the mouse γHV model, murine gammaherpesvirus (MHV68), to identify a dose-dependent outcome of MHV68 infection of macrophages, with high dose infection resulting in extensive morphological changes, viral gene expression, and a pronounced inflammatory cell death not observed under conditions of lytic replication occurring at lower infectious dose. Virion envelope and tegument components were not sufficient for this dose-dependent cell death, which required intact viral DNA and virus transcription, yet occurred independently of viral DNA replication and late gene transcription. Necrostatin-1 (Nec-1) treatment, an anti-inflammatory therapeutic, limited cell death and reduced cell morphology alterations, with no impact on virus replication, uncoupling cell death from lytic replication. Activation of autophagy profoundly limited high dose infection outcomes, with increased cell survival and reduced viral gene expression. Despite the improved cell survival observed in cells treated with Nec-1, biochemical analysis of infected cultures identified robust apoptosis induction with subsequent activation of gasdermin E, suggesting a multi-modal cell death mechanism culminating in pyroptosis. Our findings suggest that high dose macrophage infection byMHV68 is a major driver of inflammatory cell death to potentially shape downstream inflammation and immune responses.
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