TCR-JANUS 衔接蛋白实现双特异性靶向以克服 TCR-T 细胞治疗中的肿瘤异质性
TCR-JANUS engager proteins enable bispecific targeting to overcome tumor heterogeneity in TCR-T cell therapy.
基于 T 细胞受体(TCR)的免疫疗法受限于肿瘤抗原异质性,后者常导致复发。
英文原题:Regression of renal cell carcinoma by T cell receptor-engineered T cells targeting a human endogenous retrovirus.
这是首项显示人ccRCC细胞可被靶向HERV衍生抗原的TCR工程T细胞选择性识别并杀伤的报告。这些临床前发现为在临床试验(NCT03354390)中评估HERV-E TCR转导T细胞输注治疗转移性ccRCC患者提供了基础。
我们发现了一种新型人类内源性逆转录病毒(CT-RCC HERV-E),其在大多数透明细胞肾细胞癌(ccRCC)中选择性表达,并作为T细胞介导杀伤的抗原来源。在此,我们描述了靶向ccRCC特异性CT-RCC HERV-E衍生抗原的新型T细胞受体(TCR)的克隆,并表征了HERV-E TCR转导T细胞(HERV-E T细胞)的抗肿瘤活性。
我们从一名同种异体干细胞移植后ccRCC免疫介导消退的患者中分离出一株CD8+ T细胞克隆,该克隆以HLA-A11限制性方式识别CT-RCC-1 HERV-E衍生肽。我们使用5' cDNA末端快速扩增(RACE)克隆全长HERV-E TCR,并生成编码该TCR的逆转录病毒用于转导T细胞。我们在体外和小鼠异种移植模型中表征了HERV-E T细胞的表型和功能。最后,我们实施了一种符合良好生产规范的HERV-E T细胞可扩展生产方法。
HLA-A11限制性HERV-E反应性TCR表现出CD8依赖性表型,并显示对CT-RCC-1肽的特异性识别。与未修饰的T细胞相比,经修饰表达HERV-E TCR的CD8 + T细胞对表达CT-RCC HERV-E的HLA-A11 + ccRCC细胞表现出强效抗肿瘤活性。当与HERV-E敲除的ccRCC细胞共培养时,HERV-E T细胞的杀伤作用消失。HERV-E T细胞在小鼠模型中诱导已建立的ccRCC肿瘤消退,并改善荷瘤小鼠的生存。在良好生产规范条件下从健康供者大规模生产的HERV-E T细胞保留了对ccRCC的特异性抗原识别和细胞毒性。
BACKGROUND: We discovered a novel human endogenous retrovirus (CT-RCC HERV-E) that was selectively expressed in most clear cell renal cell carcinomas (ccRCC) and served as a source of antigens for T cell-mediated killing. Here, we described the cloning of a novel T cell receptor (TCR) targeting a CT-RCC HERV-E-derived antigen specific to ccRCC and characterized antitumor activity of HERV-E TCR-transduced T cells (HERV-E T cells). METHODS: We isolated a CD8 + T cell clone from a patient with immune-mediated regression of ccRCC post-allogeneic stem cell transplant that recognized the CT-RCC-1 HERV-E-derived peptide in an HLA-A11-restricted manner. We used 5'Rapid Amplification of cDNA Ends (RACE) to clone the full length HERV-E TCR and generated retrovirus encoding this TCR for transduction of T cells. We characterized HERV-E T cells for phenotype and function in vitro and in a murine xenograft model. Lastly, we implemented a good manufacturing practice-compliant method for scalable production of HERV-E T cells. RESULTS: The HLA-A11-restricted HERV-E-reactive TCR exhibited a CD8-dependent phenotype and demonstrated specific recognition of the CT-RCC-1 peptide. CD8 + T cells modified to express HERV-E TCR displayed potent antitumor activity against HLA-A11 + ccRCC cells expressing CT-RCC HERV-E compared with unmodified T cells. Killing by HERV-E T cells was lost when cocultured against HERV-E knockout ccRCC cells. HERV-E T cells induced regression of established ccRCC tumors in a murine model and improved survival of tumor-bearing mice. Large-scale production of HERV-E T cells under good manufacturing practice conditions generated from healthy donors retained specific antigen recognition and cytotoxicity against ccRCC. CONCLUSIONS: This is the first report showing that human ccRCC cells can be selectively recognized and killed by TCR-engineered T cells targeting a HERV-derived antigen. These preclinical findings provided the foundation for evaluating HERV-E TCR-transduced T cell infusions in patients with metastatic ccRCC in a clinical trial (NCT03354390).
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