γδ T 细胞调节小细胞肺癌中的抗肿瘤免疫
γδ T cells modulate anti-tumor immunity in small cell lung cancer.
我们的发现表明,活化的γδ T细胞可能是SCLC治疗的有价值靶点。
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.
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。
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。
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.
MEMBER ACCOUNT
登录成功会直接打开下一页。