生物
蛋白质水解
细胞生物学
受体
信号转导
内吞作用
G蛋白偶联受体
泛素蛋白连接酶类
信号蛋白
泛素
细胞信号
分子生物学
作者
Jeremy Bjelajac,Adrià Cañellas‐Socias,Preeti Nehra,Kevin Reynolds,Meena Malipatlolla,Naiara Martínez-Vélez,Diane C. Manjarrez,Katie Ho,Peng Xu,Jennifer L. Hamad,Sean A. Yamada-Hunter,Louai Labanieh,Elena Sotillo,Crystal L. Mackall
出处
期刊:Cell
[Cell Press]
日期:2026-05-01
被引量:1
标识
DOI:10.1016/j.cell.2026.04.037
摘要
We sought to endow T cell autonomous regulation of cell surface protein expression by exploiting the conditional proteolytic activity of ADAM17 following T cell activation. Screening of canonical ADAM17 substrates yielded a minimal 15-aa CD62L-derived motif that confers rapid and reversible cleavage of a receptor following T cell activation-termed activation-induced release (AIR). Embedding AIR into tonic-signaling CARs reduced basal CAR expression proportional to the degree of tonic signaling induced, curtailing exhaustion and improving antitumor potency. In non-tonic signaling CARs, AIR decreased activation-induced cell death and enhanced T cell expansion after stimulation. AIR's modularity supports higher-order logic-gating; AIR-regulated peptide masks enable antigen-dependent unmasking of an EGFR-targeting CAR. Finally, CRISPR knockin of AIR into endogenous FAS or TGFBR2 endowed them with activation-induced shedding, which enhanced tumor clearance while preserving signaling in non-activating conditions. AIR is a compact switch that provides fast, autonomous regulation of surface proteins for next-generation cell therapies.
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