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Deletion of a distal IRF4 element prevents inflammation-induced reprogramming of human regulatory T cell fate

Patrick Ho, Alexander Vu, Joey Leung, Wendy L. Rosenthal, Vasilis Ntranos, Jeffrey A. Bluestone, Qizhi Tang

Peer-reviewed journal

In the authors' words

Abstract Regulatory T (T reg ) cells in mice can lose lineage identity and acquire proinflammatory functions, but whether human T reg cells are similarly susceptible to cytokine-driven destabilization remains unclear. Here we established an in vitro model of human T reg cell destabilization defined by silencing of the lineage-specifying transcription factor FOXP3, loss of suppressive function and acquisition of proinflammatory activity. Single-cell chromatin accessibility and transcriptomic profiling revealed a genome-wide increase in accessibility at AP-1-binding sites, including a putative regulatory element distal to IRF4 . Increased accessibility at this element correlated with increased IRF4 expression during T reg cell destabilization, and its excision conferred resistance to inflammatory cytokine-induced reprogramming. Conversely, forced expression of IRF4 together with BATF promoted T reg cell destabilization. These data identify a distal IRF4 regulatory element as a critical node enabling heightened AP-1-IRF4 cooperative activity to drive T reg cell destabilization, with implications for the design of more stable and effective T reg cell-based therapies.

Main resultThe abstract does not state a limitation.

Appeared: Wednesday, September 23. Nature Immunology. Peer-reviewed journal.

DOI: 10.1038/s41590-026-02655-8