CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:IRIS: Discovery of cancer immunotherapy targets arising from pre-mRNA alternative splicing.
IRIS: Discovery of cancer immunotherapy targets arising from pre-mRNA alternative splicing.
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可变剪接(AS)在癌症中普遍存在,产生了大量但很大程度上尚未探索的新型免疫治疗靶点。我们描述了用于免疫治疗靶点筛选的RNA剪接异构体肽(IRIS),这是一个能够发现AS衍生肿瘤抗原(TAs)的计算平台,用于T细胞受体(TCR)和CAR-T 细胞治疗。IRIS利用大规模肿瘤和正常转录组数据,并整合多种筛选方法,以发现具有肿瘤相关或肿瘤特异性表达的AS衍生TAs。在一项整合转录组学和免疫肽组学数据的概念验证分析中,我们表明数百个IRIS预测的TCR靶点由人类白细胞抗原(HLA)分子呈递。
我们将IRIS应用于神经内分泌前列腺癌(NEPC)的RNA-seq数据。从2,939个NEPC相关AS事件中,IRIS预测了来自808个事件的1,651个表位,作为两种常见HLA类型(A*02:01和A*03:01)的潜在TCR靶点。更严格的筛选测试优先选择了来自20个事件的48个表位,这些表位具有“新抗原样”NEPC特异性表达。预测的表位通常由30个核苷酸的微外显子编码。为了验证IRIS预测的TCR表位的免疫原性和T细胞识别,我们进行了体外T细胞致敏并结合单细胞TCR测序。转导到人外周血单个核细胞(PBMCs)中的七个TCR对各个IRIS预测的表位表现出高活性,为分离出对AS衍生肽具有反应性的TCR提供了有力证据。一个选定的TCR对表达目标肽的靶细胞表现出高效的细胞毒性。
我们的研究阐明了AS对癌细胞TA库的贡献,并证明了IRIS在发现AS衍生TA和拓展癌症免疫疗法方面的实用性。
Alternative splicing (AS) is prevalent in cancer, generating an extensive but largely unexplored repertoire of novel immunotherapy targets.
We describe I soform peptides from R NA splicing for I mmunotherapy target S creening (IRIS), a computational platform capable of discovering AS-derived tumor antigens (TAs) for T cell receptor (TCR) and chimeric antigen receptor T cell (CAR-T) therapies.
IRIS leverages large-scale tumor and normal transcriptome data and incorporates multiple screening approaches to discover AS-derived TAs with tumor-associated or tumor-specific expression. In a proof-of-concept analysis integrating transcriptomics and immunopeptidomics data, we showed that hundreds of IRIS-predicted TCR targets are presented by human leukocyte antigen (HLA) molecules.
We applied IRIS to RNA-seq data of neuroendocrine prostate cancer (NEPC). From 2,939 NEPC-associated AS events, IRIS predicted 1,651 epitopes from 808 events as potential TCR targets for two common HLA types (A*02:01 and A*03:01). A more stringent screening test prioritized 48 epitopes from 20 events with "neoantigen-like" NEPC-specific expression. Predicted epitopes are often encoded by microexons of 30 nucleotides.
To validate the immunogenicity and T cell recognition of IRIS-predicted TCR epitopes, we performed in vitro T cell priming in combination with single-cell TCR sequencing. Seven TCRs transduced into human peripheral blood mononuclear cells (PBMCs) showed high activity against individual IRIS-predicted epitopes, providing strong evidence of isolated TCRs reactive to AS-derived peptides. One selected TCR showed efficient cytotoxicity against target cells expressing the target peptide.
Our study illustrates the contribution of AS to the TA repertoire of cancer cells and demonstrates the utility of IRIS for discovering AS-derived TAs and expanding cancer immunotherapies.
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