NFAT公司
免疫系统
癌症研究
免疫检查点
癌症
生物
肿瘤微环境
医学
免疫学
免疫疗法
内科学
转录因子
遗传学
基因
作者
Yifan Liu,Gege Liu,Xuanlin Wang,Xueru Zhang,Junlu Wu,Yuan Li,Yao Lu,Ce Shi,Feng Ye,Ruixin Sun
标识
DOI:10.1007/s13402-025-01096-z
摘要
While immune checkpoint inhibitors (ICIs) have revolutionized cancer therapy, their efficacy in gastric cancer (GC) remains limited, underscoring the need for mechanistic biomarkers of immune evasion. We analyzed m1A RNA modification patterns in the TCGA-STAD cohort, stratifying patients into three subtypes. Functional assays (including CRISPR-based SFRP2 modulation, NFAT/TOX reporter systems, and ex vivo T-cell exhaustion models) were employed to dissect the m1A-SFRP2-NFAT/TOX axis. High-m1A tumors exhibited an immunosuppressive microenvironment dominated by exhausted TIM-3+PD-1+ T cells and poor ICIs responses. Mechanistically, m1A-modified transcripts stabilized SFRP2, which activated NFAT1/2-TOX signaling to drive T-cell dysfunction-independent of PD-L1 or TMB. SFRP2 overexpression induced irreversible T-cell exhaustion, while its blockade restored antitumor immunity in preclinical models. Our study unveils m1A-dependent epitranscriptomic control of SFRP2 as a novel regulator of the NFAT/TOX-mediated immune evasion axis in GC. The m1A scoring system may refine patient stratification, and targeting SFRP2 represents a promising strategy to overcome ICI resistance. Not applicable.
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