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Regulatory T cells epigenetically reprogrammed from autoreactive effector T cells mitigate established autoimmunity

GSE303685 Mus musculus Expression profiling by high throughput sequencing 6 samples Submitted 2025/07/25 Platform GPL19057
Summary
Reprogramming autoreactive CD4⁺ effector T (Teff) cells into immunosuppressive regulatory T (Treg) cells represents a promising strategy for treating established autoimmune diseases. However, the stability and function of such reprogrammed Tregs under inflammatory conditions remain unclear. Here, we show that demethylation of core Treg identity genes in Teff cells yields lineage-stable Effector T cell Reprogrammed Tregs (ER-Tregs). A single adoptive transfer of ER-Tregs not only prevents autoimmune neuroinflammation in mice when given before disease onset but also arrests its progression when administered after onset. Compared to Foxp3‑overexpressing Teff cells, induced Tregs from naïve precursors, and endogenous Tregs, ER‑Tregs provide superior protection against autoimmune neuroinflammation. This enhanced efficacy stems from their inherited autoantigen specificity and selectively preserved effector‑cell transcriptional programs, which together bolster their fitness in inflammatory environments and enhance their suppressive capacity. Our results establish epigenetic reprogramming of autoreactive Teff cells as an effective approach to generate potent, stable Tregs for the treatment of refractory autoimmune conditions.
Published in
Regulatory T cells epigenetically reprogrammed from autoreactive effector T cells mitigate established autoimmunity
Colson TR, Cameron JJ, Muendlein HI et al. · bioRxiv : the preprint server for biology 2025 · PMID 40766652 · doi:10.1101/2025.07.24.665398
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Also filed as BioProject PRJNA1297086 and SRA study SRP603689. Searching any of these in the dataset finder brings you back here.

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