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.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:T-cell Receptor Therapy Targeting Mutant Capicua Transcriptional Repressor in Experimental Gliomas.
T-cell Receptor Therapy Targeting Mutant Capicua Transcriptional Repressor in Experimental Gliomas.
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胶质瘤是内在性脑肿瘤,对放疗和烷化剂化疗等标准治疗方式具有高度固有性和获得性耐药。胶质瘤亚型通过特征性突变来识别。其中一些特征性突变已被证明可产生适合靶向免疫治疗的新抗原表位。
我们使用基于肽的ELISpot试验,在MHC人源化小鼠中筛选潜在的复发性胶质瘤新表位。接种疫苗后,对已建立的T细胞系进行基于液滴的单细胞T细胞受体(TCR)测序,以发现新表位特异性TCR。在通过基于CRISPR的递送靶向抑癌基因的guide RNA所诱导的MHC人源化小鼠新开发的胶质瘤模型中,评估了脑室内TCR转基因T细胞疗法的疗效。
我们鉴定出复发性capicua转录抑制因子(CIC)在215位点的失活热点突变CICR215W/Q为免疫原性MHC II类(MHCII)限制性新表位。对MHC人源化小鼠进行疫苗接种可产生针对CICR215W/Q的强效MHCII限制性突变特异性T细胞反应。过继性心室内转移CICR215W特异性TCR转基因T细胞对表达CICR215W的同源胶质瘤发挥抗肿瘤反应。
将具有免疫活性的MHC人源化原位胶质瘤模型整合到共享免疫原性胶质瘤新抗原的发现中,有助于识别和临床前测试HLA限制性新抗原特异性TCR,用于局部TCR转基因T细胞过继治疗。
Gliomas are intrinsic brain tumors with a high degree of constitutive and acquired resistance to standard therapeutic modalities such as radiotherapy and alkylating chemotherapy. Glioma subtypes are recognized by characteristic mutations. Some of these characteristic mutations have shown to generate immunogenic neoepitopes suitable for targeted immunotherapy. EXPERIMENTAL DESIGN: Using peptide-based ELISpot assays, we screened for potential recurrent glioma neoepitopes in MHC-humanized mice. Following vaccination, droplet-based single-cell T-cell receptor (TCR) sequencing from established T-cell lines was applied for neoepitope-specific TCR discovery. Efficacy of intraventricular TCR-transgenic T-cell therapy was assessed in a newly developed glioma model in MHC-humanized mice induced by CRISPR-based delivery of tumor suppressor-targeting guide RNAs.
We identify recurrent capicua transcriptional repressor (CIC) inactivating hotspot mutations at position 215 CICR215W/Q as immunogenic MHC class II (MHCII)-restricted neoepitopes. Vaccination of MHC-humanized mice resulted in the generation of robust MHCII-restricted mutation-specific T-cell responses against CICR215W/Q. Adoptive intraventricular transfer of CICR215W-specific TCR-transgenic T cells exert antitumor responses against CICR215W-expressing syngeneic gliomas.
The integration of immunocompetent MHC-humanized orthotopic glioma models in the discovery of shared immunogenic glioma neoepitopes facilitates the identification and preclinical testing of human leukocyte antigen (HLA)-restricted neoepitope-specific TCRs for locoregional TCR-transgenic T-cell adoptive therapy.
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