T cell receptor (TCR) signaling is precisely tuned to prevent self-reactivity while allowing protective immunity. Here we found that acetylation modulated TCR signaling. The loss of SIRT2 deacetylase activity in T cells led to amplified calcium mobilization and phosphorylation of key proximal TCR molecules in naive T cells and reversed dampened TCR signaling in anergic T cells. During thymic selection, SIRT2 deficiency lowered the TCR signaling threshold and resulted in a broader TCR repertoire diversity. Mechanistically, we identified acetyl-lysine K228 on the linker region of LCK as a substrate specific for SIRT2 that governed LCK conformation and activity. SIRT2 inhibition in exhausted mouse and human tumor-infiltrating T cells restored TCR responsiveness and antitumor immunity. These findings highlighted SIRT2-modulated protein acetylation as a regulatory mechanism that set the TCR threshold in T cells.
SIRT2-mediated deacetylation of LCK governs the magnitude of T cell receptor signaling.
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作者:Hamaidi Imene, Cheng Pingyan, Jun Soo Young, Manna Alak, Wang Min-Hsuan, Nguyen Anh, Can Ismail, Zhang Min G, Taylor Odesha O, Bailon Luis Uriel Lopez, Fang Bin, Perez Bradford, Creelan Ben C, Marusyk Andriy, Shin Dongjun, Hwang Tae Hyun, Berglund Anders E, Shapiro Virginia S, Ji Haitao M, Conejo-Garcia José R, Kim Sungjune
| 期刊: | Nature Immunology | 影响因子: | 27.600 |
| 时间: | 2026 | 起止号: | 2026 Feb;27(2):213-224 |
| doi: | 10.1038/s41590-025-02377-3 | ||
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