癌症研究
腺癌
免疫系统
免疫疗法
生物
逃避(道德)
免疫检查点
肺
细胞因子
PD-L1
CD8型
细胞培养
补体系统
医学
野生型
细胞生长
肿瘤进展
免疫学
免疫监视
下调和上调
细胞
先天免疫系统
肿瘤微环境
STK11段
信号转导
作者
Sora Suzuki,Bojidar Kandar,Catrina Ting,Peter Deraska,Te-An Chen,Thejaswini Giridharan,ANM Nazmul H. Khan,Kristopher Attwood,Han Yu,Kayla Catalfamo,Prashant K Singh,Ryan T Bushey,Elizabeth B. Gottlin,Michael J. Campa,Edward F. Patz,Daniel Ajona,Rubén Pío,Brahm H. Segal,Edwin Yau
标识
DOI:10.1158/2326-6066.cir-25-0534
摘要
Loss-of-function STK11 mutations occur in 15-20% of lung adenocarcinomas (LUAD) and correlate with immunotherapy failure and worse survival. By integrating analysis of human tumor samples, a human LUAD cell line panel, and CCLE and TCGA datasets, we found that C3 production was increased in human STK11-mutant versus STK11-wildtype LUAD, modulated by LKB1 loss, while high C3 expression in STK11-mutant LUAD was associated with worse survival. STK11-KO in syngeneic murine LUAD tumors resulted in increased neutrophil and reduced T cell infiltration and anti-PD-1 resistance. STK11-KO tumor growth was similar in C3-/- versus wildtype mice. In contrast, C3 deletion in STK11-KO tumors resulted in dramatic inhibition of tumor growth and enhanced sensitivity to anti-PD-1 in immunocompetent mice but had no significant effect in CD8-depleted wildtype mice or in nude mice, pointing to tumor-derived C3 promoting immune evasion. Mechanistically, STK11 loss drove tumor-derived C3 production and downstream CXCL2 and complement factor H (CFH) production that promoted immune evasion and impaired anti-PD-1 efficacy. Our results show a C3-driven signaling axis for STK11-mutant LUAD promoting immune evasion and identifies therapeutic targets to render these tumors sensitive to anti-PD-1.
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