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Interferon Dependent Immune Memory during HSV-1 Neuronal Latency via Increased H3K9me3 and Restriction by ATRX

GSE306427 Mus musculus Genome binding/occupancy profiling by high throughput sequencing 8 samples Submitted 2025/10/14 Platform GPL34290
Summary
Herpes simplex virus-1 (HSV-1) establishes a latent infection in neurons, periodically reactivating to cause disease. Neuronal conditions, including immune signaling, during initial HSV-1 infection, impact later reactivation. Type I interferon (IFNα) exposure during initial infection results in promyelocytic leukemia nuclear-body (PML-NB) formation and subsequent restriction of reactivation, via mechanisms that were unknown. Here we find that PML-NB formation results in the recruitment of histone chaperones to the viral genome and increased enrichment of the repressive heterochromatin mark, histone H3 lysine 9 tri-methylation (H3K9me3), and its reader, ATRX (alpha-thalassemia/mental retardation, X-linked). ATRX is highly abundant in neurons and prevents reactivation from H3K9me3-bound latent genomes by remaining associated with viral chromatin. Therefore, we demonstrate how immune signaling during initial infection results in an epigenetic memory on HSV-1 genomes and identify ATRX as a neuronal restriction factor against HSV-1 reactivation, elucidating a new potential target for inhibiting HSV-1 reactivation and subsequent human disease.
Published in
Interferon dependent immune memory during HSV-1 neuronal latency via increased H3K9me3 and restriction by ATRX
Whitford AL, Auguste G, Francois AK et al. · Nature communications 2025 · PMID 41326404 · doi:10.1038/s41467-025-66477-2
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Also filed as BioProject PRJNA1310609 and SRA study SRP612324. Searching any of these in the dataset finder brings you back here.

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