Authors
Rapchak, K., Nyberg, L. S., Johnson, L. A., Elbert, R. A., Huff, C. J., Grissom, Z. A., Dremel, S., Tucker, J. M.
Abstract
RNA polymerase III (Pol III) activity is upregulated during herpesvirus infection, yet the functional consequences of this response remain poorly understood. To investigate the role of host Pol III transcription during murine gammaherpesvirus 68 (MHV68) infection, we depleted the Pol III transcription factor Brf1, an essential component of the TFIIIB complex required for transcription from Type I and Type II Pol III promoters. Brf1 depletion enhanced MHV68 replication during low multiplicity of infection (MOI) conditions, resulting in increased viral gene expression, viral protein accumulation, infectious virion production, and extracellular viral genome copies. These effects were confirmed to be Brf1-specific through rescue with an siRNA-resistant Brf1 construct. In contrast, Brf1 depletion produced only modest effects during high-MOI infection, suggesting that Brf1-dependent antiviral activity is most important during multistep viral spread. Transcriptomic analysis revealed accelerated induction of interferon-responsive genes early during infection in Brf1-deficient cells, followed by enhanced host transcript depletion at later stages, consistent with amplified host shutoff. Genetic disruption of the RIG-I/MAVS signaling pathway failed to abolish Brf1 antiviral activity, indicating that this phenotype is independent of MAVS-dependent interferon signaling. Finally, plaque assays demonstrated that Brf1-deficient cells supported larger plaques and increased plaque numbers, suggesting enhanced viral spread and/or entry. Together, our results reveal an unexpected role for Brf1-dependent Pol III activity in controlling gammaherpesvirus spread and suggest that virus-induced Pol III activation contributes to host antiviral defense.
Preprint server:
bioRxiv
The authors list and abstract were imported from bioRxiv on 18 Sep 2026.
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