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:Leukemia-derived exosomes induce immunosuppression of dendritic cell function via TGFB2-MRPL58 axis.
MRPL58 是外泌体驱动的免疫抑制的新型介质,提示代谢重编程参与其中。选择性 CD1a/TLR2 抑制表明外泌体逃避免疫检测,同时允许 DC 成熟,这是一种有利于白血病免疫逃逸的策略。靶向外泌体-DC 相互作用(例如阻断外泌体信号或 MRPL58)可能恢复抗肿瘤免疫。白血病外泌体主要通过 MRPL58 相关的代谢调节和 TNF-β 信号抑制 DC 功能。MRPL58 是一个有前景的治疗靶点。破坏外泌体介导的免疫抑制可能增强基于 DC 的疫苗和白血病的联合免疫治疗。
阐明白血病来源外泌体诱导树突状细胞(DCs)免疫抑制的机制,并确定潜在的治疗靶点。
通过梯度浓度实验确定了DC治疗的最佳外泌体剂量(20 µg/ml)。转录组学和qPCR验证探索了分子通路。评估了DC表型的成熟标志物(CD83/CD86)、抗原呈递(CD1a)和免疫受体(TLR2)。对细胞因子水平(IL-6、IL-17、TNF-α、IL-4)进行了定量。多组学分析确定了关键信号通路。临床验证使用了AML患者的样本。
外泌体处理诱导了广泛的DC免疫抑制,其特征是促炎细胞因子(IL-6、IL-17、TNF-α)显著下调和抗炎IL-4上调。表型分析显示CD1a和TLR2被选择性抑制,而成熟标志物(CD83/CD86)未发生改变。多组学鉴定出TNF-β信号通路为主要免疫抑制通路。qPCR证实TGF-β2和线粒体核糖体蛋白MRPL58升高,同时TLR2降低。在AML患者中的临床研究验证了TGF-β2、MRPL58和外泌体标志物的上调。外泌体损害了DC的抗原呈递、免疫应答和代谢活性。
OBJECTIVES: To elucidate the mechanisms by which leukemia-derived exosomes induce immunosuppression in dendritic cells (DCs) and identify potential therapeutic targets. METHODS: The optimal exosome dosage (20 µg/ml) for DC treatment was determined via gradient concentration experiments. Transcriptomics and qPCR validation explored molecular pathways. DC phenotype was assessed for maturation markers (CD83/CD86), antigen presentation (CD1a), and immune receptors (TLR2). Cytokine levels (IL-6, IL-17, TNF-α, IL-4) were quantified. Multi-omics analysis identified key signaling pathways. Clinical validation utilized samples from AML patients. RESULTS: Exosome treatment induced broad DC immunosuppression, characterized by significant downregulation of pro-inflammatory cytokines (IL-6, IL-17, TNF-α) and upregulation of anti-inflammatory IL-4. Phenotypic analysis revealed selective inhibition of CD1a and TLR2, while maturation markers (CD83/CD86) remained unaltered. Multi-omics identified TNF-β signaling as the primary immunosuppressive pathway. qPCR confirmed elevated TGF-β2 and mitochondrial ribosomal protein MRPL58, alongside reduced TLR2. Clinical studies in AML patients validated upregulation of TGF-β2, MRPL58, and exosomal markers. Exosomes impaired DC antigen presentation, immune response, and metabolic activity. DISCUSSION: MRPL58 is a novel mediator of exosome-driven immunosuppression, implicating metabolic reprograming. Selective CD1a/TLR2 inhibition suggests exosomes evade immune detection while permitting DC maturation, a strategy favoring leukemia immune escape. Targeting exosome-DC interactions (e.g. blocking exosomal signals or MRPL58) may restore anti-tumor immunity. CONCLUSION: Leukemia exosomes suppress DC function primarily through MRPL58-associated metabolic modulation and TNF-β signaling. MRPL58 represents a promising therapeutic target. Disrupting exosome-mediated immunosuppression could enhance DC-based vaccines and combination immunotherapies for leukemia.
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