EGFR activation disrupts immunotherapy response via SHP2-mediated suppression of tumor-intrinsic response to IFN-γ

癌症研究 免疫疗法 下调和上调 表皮生长因子受体 STAT1 封锁 肺癌 趋化因子 医学 免疫检查点 表皮生长因子受体抑制剂 原癌基因酪氨酸蛋白激酶Src PD-L1 酪氨酸激酶 癌症 蛋白质酪氨酸磷酸酶 癌症免疫疗法 抗原 免疫学 免疫系统 T细胞 信号转导 MAPK/ERK通路 磷酸化 炎症 生物
作者
Wei-Tao Zhuang,Lan-Lan Pang,Li-Yang Hu,Jun Liao,Jianhua Zhan,Ting Yong Li,Ri-Xin Chen,Jia-Ni Zheng,An-Lin Li,Wen-Yan Yu,Tian-Qin Mao,Liang Chen,Yu-Jian Huang,Shaodong Hong,Jing Li,Jun-Han Wu,Yi-Ming Zeng,Meng‐Juan Yang,Hai-qing Zeng,Yaxiong Zhang
出处
期刊:Journal of Clinical Investigation [American Society for Clinical Investigation]
卷期号:136 (5) 被引量:2
标识
DOI:10.1172/jci194377
摘要

Epidermal growth factor receptor-activating (EGFR-activating) mutations are established biomarkers of resistance to immune checkpoint blockade (ICB) in lung cancer, yet the precise molecular mechanism and effective therapeutic strategies remain elusive. In this study, we show that EGFR overexpression and amplification recapitulated the negative effect of EGFR driver mutations on the ICB response, indicating a proactive involvement of EGFR signaling in antagonizing the antitumor immune response. Functional studies unveiled that EGFR activation suppressed the cellular response to IFN-γ following ICB treatment across multiple cancer models. This impairment in IFN-γ responsiveness further limited the upregulation of T cell-recruiting chemokines and antigen presentation, resulting in reduced T cell infiltration and activation, ultimately undermining antitumor immunity. Mechanistically, EGFR promotes Src homology 2-containing protein tyrosine phosphatase 2 (SHP2) activation to accelerate STAT1 dephosphorylation, leading to premature termination of the IFN-γ response. SHP2 inhibition restored ICB sensitivity in EGFR-activated tumors, significantly reducing tumor burden while maintaining a favorable safety profile. Our findings suggest that the EGFR/SHP2 axis functions as a molecular brake to disrupt the initiation and amplification of the IFN-γ-mediated antitumor response during immunotherapy. This discovery unveils a potential avenue to overcome immunotherapy resistance in EGFR-driven tumors, particularly lung cancer, through SHP2-targeted combination strategies.
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