Neurons undergo IFNγ-driven persistent epigenetic shifts and synaptopathy in encephalitis

Publication date

2026-02-18

Authors

Shammas, Ghazal
Piccinno, Margot
Egervari, Kristof
Lemeille, Sylvain
Mariotte, Alexandre
Maltese, Federica
Panzeri, Alessandra
Wagner, Ingrid
Fonta, Nicolas
Furlan, Tiphaine

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Abstract

In infectious and autoimmune disorders of the central nervous system, neurons can become cognate immunological targets of cytotoxic T cells, leading to persistent functional and synaptic impairments. However, the molecular underpinnings of such irreversible alterations remain unclear. Using a cytotoxic T cell-driven viral encephalitis mouse model, we found synaptic loss and altered neuronal excitability that outlasted the immune response in chronically diseased mice. Employing conditional reporter mice, bulk RNA sequencing (RNA-seq), single-nucleus RNA sequencing (snRNA-seq), chromatin immunoprecipitation followed by sequencing (ChIP-seq), and assay for transposase-accessible chromatin followed by sequencing (ATAC-seq), we mapped the trajectory of transient and sustained epigenetic shifts and transcriptional changes in neurons. Notably, virus-exposed neurons, as cognate targets of cytotoxic T cells, developed interferon-gamma (IFNγ)-mediated persistent chromatin closing, reducing transcription factor accessibility and downstream synaptic gene expression. Analogous synaptic transcriptional signatures were observed in neurons of human encephalitis. Our study identifies a novel IFNγ-driven neuronal epigenetic adaptation program underlying persistent synaptopathy with implications for chronic neuroinflammatory disorders.

Keywords

chromatin remodeling, cytotoxic T cell, encephalitis, multi-omics, neuron, non-cytolytic viral clearance, synaptic loss, transcriptional adaptation, General Neuroscience

Citation

Shammas, G, Piccinno, M, Egervari, K, Lemeille, S, Mariotte, A, Maltese, F, Panzeri, A, Wagner, I, Fonta, N, Furlan, T, Kreutzfeldt, M, Vincenti, I, Yermanos, A, Page, N, Bellone, C, Muñoz, C P, Liberto, G D & Merkler, D 2026, 'Neurons undergo IFNγ-driven persistent epigenetic shifts and synaptopathy in encephalitis', Neuron, vol. 114, no. 4, pp. 622-639.e11. https://doi.org/10.1016/j.neuron.2025.11.006