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◆ Cell reports2026-09-26

Antigen-specific regulatory T cells eliminate cognate CD4 effector T cells through perforin, granzyme B, and Bim.

Yanyu Ye, Haoyue Zheng, Jiaqi Duan, Lihua Mo, Yun Liao, Yadong Zheng, Liguo Li, Pengyuan Zheng, Haiyang Han, Chenyang Li, Xiaoyu Liu, Pingchang Yang

原始摘要(英文原文)· Original abstract
T cells (Tregs) maintain immune tolerance, yet how they selectively eliminate cognate CD4+ effector T cells remains unclear. We propose a co-activation-dependent elimination mechanism, conceptually akin to synthetic lethality. Using in vitro co-cultures, we show that simultaneous peptide-MHC II recognition by Tregs and responders is required to trigger apoptosis-a "double-lock" condition. Dual activation induces perforin and granzyme B in Tregs, while responders become susceptible via TCR-driven Bim upregulation. Conditional deletion of Gzmb, Prf1, or Bcl2l11 abrogates killing. In an OVA-driven airway inflammation model, wild-type but not granzyme B-deficient Tregs reduce lung effector T cells and inflammation, with increased cleaved caspase-3 in targets. This effect requires cognate antigen and occurs without Treg conversion. Human assays recapitulate these findings. Our work defines stringent molecular requirements for Treg-mediated cytotoxicity, informing therapeutic strategies for allergy, autoimmunity, and cancer.
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Antigen-specific regulatory T cells eliminate cognate CD4 effector T cells through perforin, granzyme B, and Bim. — 科研速览 Science Skim