T细胞受体
T细胞
细胞生物学
甲基化
生物
蛋氨酸
HEK 293细胞
受体
癌症研究
生物化学
基因
免疫学
免疫系统
氨基酸
作者
Piyush Sharma,Ao Guo,Suresh Poudel,Emilio Boada-Romero,Katherine Verbist,Gustavo Palacios,Kalyan Immadisetty,Jinan Chen,Dalia Haydar,Ashutosh Mishra,Junmin Peng,M. Madan Babu,Giedre Krenciute,Evan S. Glazer,Douglas R. Green
标识
DOI:10.1038/s41590-025-02223-6
摘要
Abstract T cell receptor (TCR) activation is regulated in many ways, including niche-specific nutrient availability. Here we investigated how methionine (Met) availability and TCR signaling interplay during the earliest events of T cell activation affect subsequent cell fate. Limiting Met during the initial 30 min of TCR engagement increased Ca 2+ influx, NFAT1 (encoded by Nfatc2 ) activation and promoter occupancy, leading to T cell exhaustion. We identified changes in the protein arginine methylome during initial TCR engagement and identified an arginine methylation of the Ca 2+ -activated potassium transporter KCa3.1, which regulates Ca 2+ -mediated NFAT1 signaling for optimal activation. Ablation of KCa3.1 arginine methylation increased NFAT1 nuclear localization, rendering T cells dysfunctional in mouse tumor and infection models. Furthermore, acute, early Met supplementation reduced nuclear NFAT1 in tumor-infiltrating T cells and augmented antitumor activity. These findings identify a metabolic event early after T cell activation that affects cell fate.
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