ArticlePLoS pathogens2025
Repression of varicella zoster virus gene expression during quiescent infection in the absence of detectable histone deposition.
Article in PLoS pathogens, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 5 papers.
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Who cites it
5 citing papers in PubMed.
- Concurrent Central and Autonomic Nervous System Involvement in Varicella-Zoster Virus Infection in an Immunocompetent Patient: A Case-Based Mechanistic Analysis.Infectious disease reports · 2026Article
- Varicella zoster virus and the central nervous system.Nature reviews. Microbiology · 2026Review
- Does Myalgic Encephalomyelitis/Chronic Fatigue Syndrome (ME/CFS) Represent a Poly-Herpesvirus Post-Virus Infectious Disease?Viruses · 2025Review
- A human sensory neuron model for varicella-zoster virus latency and reactivationbioRxiv : the preprint server for biology · 2025Article
- Discovering the complete enhancer map of human herpesviruses using a natural language processing model.Nature communications · 2025Article
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Authors and funding
15 authors.
Funding
Abstract
Varicella zoster virus (VZV) is a human-specific herpesvirus that establishes latency in peripheral neurons. The only transcripts detected in infected human trigeminal ganglia (TG) obtained shortly after death correspond to the VZV latency-associated transcript (VLT) and associated VLT-ORF63 splice variants. In vitro studies showed that VLT-ORF63 is translated into a protein (pVLT-ORF63) that induces VZV transcription. The mechanisms that lead to this restricted gene expression and the transition to lytic replication remain unknown, partly due to the difficulty of working with human neurons. In this study, we addressed whether the neuroblastoma-derived cell line SH-SY5Y could serve as a model to investigate the mechanisms that lead to repression of VZV gene expression followed by reactivation. VZV productively infected differentiated SH-SY5Y (dSH-SY5Y) whereas incubation with acyclovir (ACV) inhibited virus replication and induced a progressive repression of the virus. Upon removal of ACV there was production of viral particles in a subset of cells, while others contained non-replicating VZV genomes and VLT-containing transcripts for at least 20 days post-infection (dpi). Exogenous expression of VLT-ORF63 induced productive infection, suggesting that the non-replicating and repressed genomes remained functional. Interestingly, histone deposition was undetectable at VZV genomes in quiescently infected dSH-SY5Y cells, pointing to a potential novel mechanism leading to VZV repression in this neuronal setting.
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