CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Mis-splicing-derived neoantigens and cognate TCRs in splicing factor mutant leukemias.
Mis-splicing-derived neoantigens and cognate TCRs in splicing factor mutant leukemias.
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RNA剪接因子的突变在癌症中普遍存在,并产生反复出现的错误剪接mRNA异构体。在此,我们鉴定了一系列由白血病相关的体细胞剪接机器新形态突变所促进的高度刻板剪接改变翻译而来的真正新抗原。我们利用特征条形码肽-MHC dextramer从健康供者、活动性髓系恶性肿瘤患者以及治愈性异基因干细胞移植后患者中分离出新抗原反应性TCR。新抗原反应性CD8+ T细胞存在于活动性癌症患者的血液中,其表型与病毒反应性T细胞不同,并具有细胞毒性功能受损的证据。用能够识别由CLK3和RHOT2错误剪接事件产生的SRSF2突变诱导新抗原的TCR工程化改造的T细胞,可实现对SRSF2突变白血病的特异性识别和细胞毒性。这些数据表明,反复出现的RNA错误剪接事件是髓系白血病中可操作的公共新抗原来源,并为通过基因重定向T细胞以识别这些靶点提供了概念验证。
Mutations in RNA splicing factors are prevalent across cancers and generate recurrently mis-spliced mRNA isoforms.
Here, we identified a series of bona fide neoantigens translated from highly stereotyped splicing alterations promoted by neomorphic, leukemia-associated somatic splicing machinery mutations.
We utilized feature-barcoded peptide-major histocompatibility complex (MHC) dextramers to isolate neoantigen-reactive T cell receptors (TCRs) from healthy donors, patients with active myeloid malignancy, and following curative allogeneic stem cell transplant. Neoantigen-reactive CD8 + T cells were present in the blood of patients with active cancer and had a distinct phenotype from virus-reactive T cells with evidence of impaired cytotoxic function.
T cells engineered with TCRs recognizing SRSF2 mutant-induced neoantigens arising from mis-splicing events in CLK3 and RHOT2 resulted in specific recognition and cytotoxicity of SRSF2-mutant leukemia. These data identify recurrent RNA mis-splicing events as sources of actionable public neoantigens in myeloid leukemias and provide proof of concept for genetically redirecting T cells to recognize these targets.
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