← 返回前沿论文

NSCLC 脑转移瘤表现出 HLA-I 抗原呈递机制减少和免疫逃逸,且独立于 IFNγ信号缺陷

英文原题:NSCLC brain metastases exhibit reduced HLA-I antigen presentation machinery and immune evasion independent of IFNγ signaling defects.

PubMed 2026/05/28(内容时间) Mol Cancer Q1 · IF 42.2(JCR 2025)

研究概要

我们的结果揭示,APM下调是NSCLC脑转移的一个显著特征,独立于局部IFNγ信号缺陷,并与不利的临床特征相关。我们还鉴定了脑转移中APM通路的候选调节因子,具有潜在的转化意义。

研究思路结论见上方概要

肺癌脑转移患者可从免疫检查点抑制剂(ICI)治疗中获益。然而,颅内缓解往往有限,且并不总是与颅外病灶所见的活性一致。恶性细胞上IFNγ信号通路及HLA I类抗原呈递机制(APM)的缺陷可驱动免疫逃逸和ICI耐药,传统上一直被视为相互依赖。这些改变在非小细胞肺癌(NSCLC)脑进展中的可能作用仍知之甚少。

我们使用多重定量免疫荧光技术,在两个患者队列中测量并空间映射了癌细胞及邻近非恶性基质细胞中的IFNγ信号标志物(pSTAT1和IRF1)以及多个HLA I类APM组分(β2M、PSMB8、PSMB9、PSMB10、TAP1、TAP2、Tapasin、Calreticulin和ERp57),这些队列包括原发肿瘤、颅内和颅外NSCLC转移灶。我们还研究了队列中的TIL(肿瘤浸润淋巴细胞)(TILs)亚群,对亲本人NSCLC H2030细胞及其脑转移对应细胞H2030-BrM3进行了全转录组分析,并利用人类肿瘤的空间转录组学扩展了这些结果。

我们发现原发灶和转移灶中IFNγ信号标志物水平相当,而转移灶中多个APM组分显著下调,其中部分下调仅限于脑部。HLA I类APM组分的下调与效应TIL减少及生存期较差相关。对人源亲本H2030和脑转移H2030-BrM3肺腺癌细胞的分析显示,IFNγ刺激后信号反应相当,而转移细胞中HLA I类APM标志物降低。对原发/转移细胞及人肿瘤的转录组分析鉴定出多个与HLA I类APM下调相关的基因存在差异表达。

展开英文摘要原文

BACKGROUND: Patients with lung cancer brain metastases can benefit from immune checkpoint inhibitors (ICI). However, intracranial responses are often limited and not always concordant with activity seen in extracranial disease. Defects in IFNγ signaling and HLA class-I antigen presentation machinery (APM) on malignant cells can drive immune evasion and ICI resistance, and have traditionally been viewed as interdependent. The possible role of these alterations in non-small cell lung cancer (NSCLC) brain progression remains poorly understood. METHODS: Using multiplex quantitative immunofluorescence, we measured and spatially mapped IFNγ signaling markers (pSTAT1 and IRF1) and multiple HLA class-I APM components (β2M, PSMB8, PSMB9, PSMB10, TAP1, TAP2, Tapasin, Calreticulin, and ERp57) in cancer cells and neighboring non-malignant stromal cells from two patient cohorts, including primary tumors, intra- and extra-cranial NSCLC metastases. We also studied tumor-infiltrating lymphocyte (TILs) subpopulations in the cohorts, performed whole transcriptomic analysis of parental human NSCLC H2030 cells and their brain metastatic counterpart H2030-BrM3, and expanded the results using spatial transcriptomics of human tumors. RESULTS: We found comparable levels of IFNγ signaling markers in primary and metastatic lesions and marked downregulation of multiple APM components in metastases, some of which were restricted to the brain. Downregulation of HLA class-I APM components was associated with reduced effector TILs and worse survival. Analysis of human parental H2030 and brain metastatic H2030-BrM3 lung adenocarcinoma cells showed comparable signaling responses after IFNγ stimulation and reduced HLA class-I APM markers in metastatic cells. Transcriptomic analysis of primary/metastatic cells and human tumors identified differential expression of multiple genes associated with HLA class-I APM downregulation. CONCLUSIONS: Our results reveal that APM downregulation is a prominent feature of NSCLC brain metastases, is independent from local IFNγ signaling defects and is associated with unfavorable clinical features. We also identified candidate modulators of the APM pathway in brain metastases with potential translational significance.

论文信息

作者
Vilariño N、de Rodas ML、Villalba-Esparza M、Rajendran BK、Huang B、Hijazo-Pechero S、Costantini A、Ranjan K
第一作者单位
Department of Pathology, Yale School of Medicine, New Haven, CT, USA.United States
通讯作者单位
Department of Pathology, Yale School of Medicine, New Haven, CT, USA. kurt.schalper@yale.edu.United States
期刊
Molecular cancer2026 May 28
原文标识
PubMed 42210261 · DOI 10.1186/s12943-026-02687-6