CD81 通过阻断 CD274/PD-L1 的选择性自噬降解驱动放射抵抗性胶质母细胞瘤的免疫逃逸
CD81 drives immune evasion in radioresistant glioblastoma by blocking selective autophagic degradation of CD274/PD-L1.
我们的工作确立了CD81作为连接放射抵抗与免疫逃逸的关键桥梁,其通过维持GBM中CD274的丰度发挥作用,并突显CD81作为优化放射免疫治疗的有前景的治疗靶点。
英文原题:Targeting the LMP1-ALIX axis in EBV(+) nasopharyngeal carcinoma inhibits immunosuppressive small extracellular vesicle secretion and boosts anti-tumor immunity.
Targeting the LMP1-ALIX axis in EBV(+) nasopharyngeal carcinoma inhibits immunosuppressive small extracellular vesicle secretion and boosts anti-tumor immunity.
我们的研究揭示了LMP1与ALIX和PD-L1相互作用形成三分子复合物的机制,促进PD-L1装载进入依赖ALIX的sEV分泌途径,最终抑制NPC中的抗肿瘤免疫反应。这突显了NPC免疫治疗的新靶点和预后标志物。
免疫治疗已经彻底改变了鼻咽癌(NPC)的治疗方案,但其应答率仍然不足。小细胞外囊泡(sEVs)上的程序性死亡配体1(PD-L1)介导肿瘤局部和外周的免疫抑制,PD-L1装载进入这些囊泡的机制正受到越来越多的关注。潜伏膜蛋白1(LMP1)是EBV阳性NPC中表达的关键病毒癌蛋白,有助于重塑肿瘤微环境。然而,LMP1在NPC中调节肿瘤免疫的确切机制仍不清楚。在此,我们旨在研究LMP1和sEV PD-L1在NPC免疫逃逸中的作用及调控机制。
我们分别采用多重免疫荧光(mIF)和流式细胞术分析了LMP1对鼻咽癌(NPC)组织中TIL(肿瘤浸润淋巴细胞)丰度及人源化荷瘤小鼠模型的影响。采用透射电子显微镜和纳米颗粒跟踪分析对sEVs进行表征。利用免疫沉淀-质谱联用技术鉴定与LMP1相互作用的蛋白。通过流式细胞术监测CD8+ T细胞增殖和干扰素-γ(IFN-γ)表达,评估sEVs对肿瘤微环境的调控作用。此外,采用mIF和生存分析分析了NPC中LMP1及下游调控因子的表达模式。
NPC患者标本和小鼠模型中LMP1高表达与CD8 + T细胞浸润受限相关。此外,LMP1促进sEV PD-L1分泌,从而在体外抑制CD8 + T细胞活力和IFN-γ表达。机制上,LMP1通过其胞内结构域招募凋亡相关基因2相互作用蛋白X(ALIX),并通过其跨膜结构域结合PD-L1,从而促进PD-L1装载入ALIX依赖性sEV。破坏ALIX可减少LMP1诱导的sEV PD-L1分泌,并在体外和体内增强CD8 + T细胞的抗肿瘤免疫。此外,NPC患者中LMP1和ALIX表达水平升高与免疫抑制特征增强及更差的预后结局呈正相关。
BACKGROUND: Immunotherapy has revolutionized the therapeutical regimen for nasopharyngeal carcinoma (NPC), yet its response rate remains insufficient. Programmed death-ligand 1 (PD-L1) on small extracellular vesicles (sEVs) mediates local and peripheral immunosuppression in tumors, and the mechanism of PD-L1 loading into these vesicles is garnering increasing attention. Latent membrane protein 1 (LMP1), a key viral oncoprotein expressed in Epstein-Barr virus (EBV)-positive NPC, contributes to remodeling the tumor microenvironment. However, the precise mechanisms by which LMP1 modulates tumor immunity in NPC remain unclear. Here, we aimed to investigate the roles and regulatory mechanisms of LMP1 and sEV PD-L1 in NPC immune evasion. METHODS: We analyzed the impact of LMP1 on tumor-infiltrating lymphocyte abundance in NPC tissues and humanized tumor-bearing mouse models using multiplex immunofluorescence (mIF) and flow cytometry, respectively. Transmission electron microscopy and nanoparticle tracking analysis were employed to characterize sEVs. Immunoprecipitation-mass spectrometry was utilized to identify proteins interacting with LMP1. The regulatory effects of sEVs on tumor microenvironment were assessed by monitoring CD8 + T cell proliferation and interferon-γ (IFN-γ) expression via flow cytometry. Furthermore, the expression patterns of LMP1 and downstream regulators in NPC were analyzed using mIF and survival analysis. RESULTS: High LMP1 expression in NPC patient specimens and mouse models was associated with restricted infiltration of CD8 + T cells. Additionally, LMP1 promoted sEV PD-L1 secretion, leading to inhibition of CD8 + T cell viability and IFN-γ expression in vitro. Mechanistically, LMP1 recruited apoptosis-linked gene 2-interacting protein X (ALIX) through its intracellular domain and bound PD-L1 through its transmembrane domain, thereby facilitating the loading of PD-L1 into ALIX-dependent sEVs. Disruption of ALIX diminished LMP1-induced sEV PD-L1 secretion and enhanced the anti-tumor immunity of CD8 + T cells both in vitro and in vivo. Moreover, increased expression levels of LMP1 and ALIX were positively correlated with enhanced immunosuppressive features and worse prognostic outcomes in NPC patients. CONCLUSION: Our findings uncovered the mechanism by which LMP1 interacts with ALIX and PD-L1 to form a trimolecular complex, facilitating PD-L1 loading into ALIX-dependent sEV secretion pathway, ultimately inhibiting the anti-tumor immune response in NPC. This highlights a novel target and prognostic marker for NPC immunotherapy.
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