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:CircPRKD3-loaded exosomes concomitantly elicit tumor growth inhibition and glioblastoma microenvironment remodeling via inhibiting STAT3 signaling.
本研究提供了GDE-circPRKD3依赖STAT3信号重塑免疫抑制性TME的新机制,并为GBM治疗提供了一种潜在的RNA免疫治疗策略。
胶质母细胞瘤干细胞及其外泌体(exos)参与塑造免疫微环境,这对肿瘤侵袭和复发至关重要。然而,涉及GSC来源的外泌体环状RNA(GDE-circRNAs)在调控肿瘤微环境(TME)中的研究仍属未知。在此,我们全面评估了一种新型免疫相关GDE-circRNA在胶质瘤微环境中的意义。
通过高通量测序筛选出GDE-circPRKD3,并通过RT-PCR、sanger测序和RNase R实验进行验证。进行了一系列体外和体内实验以研究GDE-circPRKD3的功能。采用RNA-seq、RNA免疫沉淀、多色流式细胞术和western blotting探讨GDE-circPRKD3对STAT3信号介导的TME重塑的调控。
我们已在GSC外泌体中鉴定出一种circRNA PRKD3,circPRKD3表达较低预示胶质母细胞瘤患者预后较差。过表达GDE-circPRKD3显著损害胶质瘤的生物学能力,并延长异种移植小鼠的生存期。GDE-circPRKD3以m6A依赖的方式与HNRNPC结合,加速IL6ST的mRNA衰减,并抑制下游靶点STAT3。值得注意的是,GDE-circPRKD3通过重编程肿瘤相关巨噬细胞促进CXCL10分泌,进而招募CD8+TIL(肿瘤浸润淋巴细胞)对抗GBM。此外,脑靶向脂质纳米颗粒递送circPRKD3联合免疫检查点阻断治疗实现了显著的联合获益。
BACKGROUND: Glioblastoma stem cells and their exosomes (exos) are involved in shaping the immune microenvironment, which is important for tumor invasion and recurrence. However, studies involving GSC-derived exosomal circular RNAs (GDE-circRNAs) in regulating tumor microenvironment (TME) remain unknown. Here, we comprehensively evaluated the significance of a novel immune-related GDE-circRNA in the glioma microenvironment. METHODS: GDE-circPRKD3 was screened out through high-throughput sequencing and verified by RT-PCR, sanger sequencing, and RNase R assays. A series of in vitro and in vivo experiments were performed to investigate the function of GDE-circPRKD3. RNA-seq, RNA immunoprecipitation, multicolor flow cytometry, and western blotting were used to explore the regulation of GDE-circPRKD3 on STAT3 signaling-mediated TME remodeling. RESULTS: We have characterized a circRNA PRKD3 in GSC exosomes, and lower circPRKD3 expression predicts a worse prognosis for glioblastoma patients. Overexpression of GDE-circPRKD3 significantly impairs the biological competence of glioma and prolongs the survival of xenograft mice. GDE-circPRKD3 binds to HNRNPC in an m6A-dependent manner, accelerates mRNA decay of IL6ST, and inhibits downstream target STAT3. Notably, GDE-circPRKD3 promotes CXCL10 secretion by reprogramming tumor-associated macrophages, which in turn recruits CD8+ tumor-infiltrating lymphocytes against GBM. Moreover, brain-targeted lipid nanoparticle delivery of circPRKD3 combined with immune checkpoint blockade therapy achieves significant combinatorial benefits. CONCLUSIONS: This study provides a novel mechanism by which GDE-circPRKD3 relies on STAT3 signaling to remodel immunosuppressive TME and offers a potential RNA immunotherapy strategy for GBM treatment.
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