Temporal and context-dependent requirements for the transcription factor Foxp3 expression in regulatory T cells

Wei Hu(Memorial Sloan Kettering Cancer Center), Gabriel A. Dolsten(Princeton University), Eric Y. Wang(Memorial Sloan Kettering Cancer Center), Giorgi Beroshvili(Memorial Sloan Kettering Cancer Center), Zhong-Min Wang(Memorial Sloan Kettering Cancer Center), Aazam P. Ghelani(Memorial Sloan Kettering Cancer Center), Lion F. K. Uhl(Memorial Sloan Kettering Cancer Center), Regina Bou-Puerto(Memorial Sloan Kettering Cancer Center), Xiao Jun Huang(Memorial Sloan Kettering Cancer Center), Anthony Michaels(Memorial Sloan Kettering Cancer Center), Beatrice Hoyos(Memorial Sloan Kettering Cancer Center), Wenjie Jin(Systems Biology Institute), Yuri Pritykin(Princeton University), Alexander Y. Rudensky(Memorial Sloan Kettering Cancer Center)
Nature Immunology
October 8, 2025
Cited by 17Open Access
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Abstract

Abstract Regulatory T (T reg ) cells, expressing the transcription factor Foxp3, are obligatory gatekeepers of immune responsiveness, yet the mechanisms by which Foxp3 governs the T reg transcriptional network remain incompletely understood. Using a novel chemogenetic system of inducible Foxp3 protein degradation in vivo, we found that while Foxp3 was indispensable for the establishment of transcriptional and functional programs of newly generated T reg cells, Foxp3 loss in mature T reg cells resulted in minimal functional and transcriptional changes under steady state. This resilience of the Foxp3-dependent program in mature T reg cells was acquired over an unexpectedly long timescale; however, in settings of severe inflammation, Foxp3 loss led to a pronounced perturbation of T reg cell transcriptome and fitness. Furthermore, tumoral T reg cells were uniquely sensitive to Foxp3 degradation, which led to impairment in their suppressive function and tumor shrinkage in the absence of pronounced adverse effects. These studies demonstrate a context-dependent differential requirement for Foxp3 for T reg transcriptional and functional programs.


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