血脑屏障
脑转移
相互作用体
癌症研究
下调和上调
肿瘤微环境
免疫系统
转移
黑色素瘤
生物
泛素
医学
循环肿瘤细胞
紧密连接
封锁
脑瘤
肺癌
人脑
渗透(HVAC)
细胞生物学
串扰
疾病
病态的
癌症
内皮干细胞
内皮
炎症
细胞
神经科学
脑癌
免疫检查点
细胞迁移
中枢神经系统
血管
作者
Xuefei Liu,Jun Tan,Chun Wu,Guanyin Huang,Yixin Cheng,Jianyang Hu,Binyu Zhang,Mao Zhao,Boxi Zhao,Jingru Lian,Shuqian Zheng,Lin Zeng,Meng Xu,Yang Xu,Shan Zeng,Hao Yu,Hui Yang,Zhixiang Zuo,Chuanyu Liu,Weineng Feng
出处
期刊:Cancer Discovery
[American Association for Cancer Research]
日期:2026-04-13
卷期号:16 (7): 1382-1411
被引量:2
标识
DOI:10.1158/2159-8290.cd-25-1663
摘要
Brain metastasis remains a devastating disease with dismal prognosis. How circulating tumor cells (CTC) penetrate the blood-brain barrier (BBB) and reprogram the brain microenvironment remains unclear. Using spatially resolved multi-omics profiling of CTCs and brain metastases, integrated with experimental and clinical analyses, we identified glycoprotein nonmetastatic melanoma protein B (GPNMB) as a CTC-secreted driver of vascular disruption and brain colonization. CBX3 upregulation induced GPNMB expression, which bound endothelial EGFR, triggering CBL-mediated ubiquitination and degradation. Attenuated EGFR signaling suppressed FTO and disrupted endothelial junctions via YTHDF2-dependent TJP1 m6A methylation. Remarkably, GPNMB-induced BBB remodeling promoted immune infiltration via the CXCL12-CXCR4 axis and induced time-course-dependent T-cell exhaustion within the brain microenvironment. Clinically, elevated CBX3+GPNMB+ CTCs and plasma CXCL12 were significantly associated with brain metastasis progression in lung cancer and melanoma. Therapeutically, dual blockade of GPNMB and PD1 enhanced anti-brain metastasis efficacy in mice, unveiling GPNMB as a promising target for precision immunotherapy. SIGNIFICANCE: GPNMB is a CTC-secreted driver of BBB disruption and brain colonization via the CBX3-GPNMB-EGFR-FTO-TJP1 axis. GPNMB-induced BBB remodeling promotes CXCL12-CXCR4-mediated immune infiltration and enhances T-cell exhaustion, sensitizing brain metastasis tumors to GPNMB/PD1 dual blockade. CBX3+GPNMB+ CTCs and plasma CXCL12 may serve as noninvasive biomarkers for brain metastasis management.
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