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IL-4 介导的 TAP2 下调是非小细胞肺癌中免疫逃逸和免疫治疗耐药的主要且可逆机制

英文原题:IL-4 mediated TAP2 downregulation is a dominant and reversible mechanism of immune evasion and immunotherapy resistance in non-small cell lung cancer.

PubMed 2025/03/17(内容时间) Mol Cancer Q1 · IF 42.2(JCR 2025)

研究概要

我们的研究揭示了TAP2在抗原呈递之外此前未被认识的功能,并建立了一个可逆的多细胞轴,介导适应性免疫逃逸和免疫治疗耐药,具有临床潜力。

研究思路结论见上方概要

在侵袭性非小细胞肺癌(NSCLC)患者中,对自然发生的抗癌免疫和免疫治疗均常见耐药。近期研究表明,HLA I类抗原呈递机制(APM)蛋白β-2-微球蛋白的缺失在免疫检查点阻断剂的获得性耐药中发挥作用。然而,NSCLC中APM缺陷的机制、功能后果及治疗潜力仍知之甚少。

使用多重免疫荧光技术,我们在来自4个独立队列的819例基线/治疗前NSCLC中,对接受和未接受PD-1轴阻断剂治疗的患者进行了CD8+效应TIL(肿瘤浸润淋巴细胞)(TILs)及APM组分TAP1和TAP2的空间定位。通过转录组分析、磷酸化蛋白阵列、ATAC测序、表面HLA-肽复合物检测以及体外肿瘤抗原特异性T细胞杀伤实验,研究了使用siRNAs和CRISPR/Cas9沉默肺癌细胞中TAP1/2的影响。我们建立了来自原发性人NSCLC的肿瘤和免疫细胞的自体共培养体系,以研究使用单克隆抗体阻断IL4Rα和/或PD-1的功能影响。高通量药物筛选支持了能够增加NSCLC细胞中TAP2表达的化合物的鉴定。

我们在42.4%的未经治疗的NSCLC中发现了癌细胞选择性的TAP2蛋白下调,这与对免疫检查点阻断剂敏感性降低相关。TAP1下调发生在24.4%的肺肿瘤中,对生存无影响。在肺癌细胞中沉默TAP2改变了关键的细胞内免疫调节通路,限制了对促炎细胞因子的敏感性,降低了表面肽-HLA复合物的水平,并通过SOCS1上调保护恶性细胞免受肿瘤抗原特异性T细胞杀伤。人类NSCLC中的TAP2缺失与TAP2启动子染色质可及性降低和IL-4 IL-4表达升高相关。用IL-4处理降低了NSCLC细胞中TAP2水平和TAP2基因启动子的染色质可及性,并再现了TAP2缺失的所有功能后果。在完整的人类NSCLC中,IL-4 IL-4转录本在瘤内髓系细胞中检测到,IL-4Rα阻断增加了自体TIL对人类NSCLC细胞的杀伤。表观遗传调节剂和其他具有已知抗癌活性的药物增加了肺癌细胞中TAP2的表达及其功能。

展开英文摘要原文

BACKGROUND: Resistance to both naturally occurring anti-cancer immunity and to immunotherapy is common in patients with aggressive non-small cell lung cancer (NSCLC). Recent studies indicate a role of loss of the HLA class-I antigen presentation machinery (APM) protein β-2-microglobulin in acquired resistance to immune checkpoint blockers. However, the mechanisms, functional consequences and therapeutic potential of APM defects in NSCLC remain poorly understood. METHODS: Using multiplexed immunofluorescence, we spatially mapped CD8 + effector Tumor-Infiltrating Lymphocytes (TILs) and the APM components TAP1 and TAP2 in 819 baseline/pre-treatment NSCLCs from patients treated with and without PD-1 axis blockers in 4 independent cohorts. The impact of TAP1/2 silencing in lung cancer cells using siRNAs and CRISPR/Cas9 was studied using transcriptomic analysis, phosphoprotein arrays, ATAC-sequencing, measurement of surface HLA-peptide complexes and in vitro tumor-antigen specific T-cell killing. We established autologous co-cultures of tumor and immune cells from primary human NSCLCs to study the functional impact of IL4Rα and/or PD-1 blockade using monoclonal antibodies. A high-throughput drug screen supported the identification of compounds able to increase TAP2 expression in NSCLC cells. RESULTS: We identified cancer cell selective TAP2 protein downregulation in 42.4% of treatment naïve NSCLCs associated with reduced sensitivity to immune checkpoint blockers. TAP1 downregulation occurred in 24.4% of lung tumors without survival impact. Silencing of TAP2 in lung cancer cells altered key intracellular immunomodulatory pathways, limited sensitivity to proinflammatory cytokines, reduced the levels of surface peptide-HLA complexes and protected malignant cells from tumor antigen-specific T-cell killing via SOCS1 upregulation. TAP2 loss in human NSCLCs was associated with reduced TAP2 promoter chromatin accessibility and elevated IL-4 IL-4 expression. Treatment with IL-4 reduced TAP2 levels and the chromatin accessibility of the TAP2 gene promoter in NSCLC cells and reproduced all the functional consequences of TAP2 loss. In intact human NSCLC, IL-4 IL-4 transcripts were detected in intratumoral myeloid cells and IL-4Rα blockade increased human NSCLC cell killing by autologous TILs. Epigenetic modulators and other drugs with known anti-cancer activity increased TAP2 expression and its function in lung cancer cells. CONCLUSIONS: Our study reveals previously unrecognized functions of TAP2 beyond antigen presentation and establishes a reversible multi-cellular axis mediating adaptive immune evasion and immunotherapy resistance with clinical potential.

论文信息

作者
Ranjan K、Rajendran BK、Deen IU、Costantini A、de Rodas ML、Desai SS、Scallo F、Gianino N
第一作者单位
Department of Pathology, School of Medicine, Brady Memorial Laboratory, Yale University, Room BML 113, New Haven, CT, 06520, USA.United States
通讯作者单位
Department of Pathology, School of Medicine, Brady Memorial Laboratory, Yale University, Room BML 113, New Haven, CT, 06520, USA. kurt.schalper@yale.edu.United States
期刊
Molecular cancer2025 Mar 17
原文标识
PubMed 40091029 · DOI 10.1186/s12943-025-02276-z