重编程工程化自体 T 细胞以克服 Merkel 细胞癌患者的耐药性
Reprogramming engineered autologous T cells to overcome resistance in patients with Merkel cell carcinoma.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:KRAS G12V neoantigen specific T cell receptor for adoptive T cell therapy against tumors.
KRAS G12V neoantigen specific T cell receptor for adoptive T cell therapy against tumors.
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KRAS突变被广泛认为是有前景的肿瘤治疗靶点。T细胞受体(TCR)可特异性识别人白细胞抗原(HLA)呈递的KRAS突变新抗原,并介导T细胞应答以清除肿瘤细胞。本研究鉴定出两种在HLA-A*11:01背景下特异性识别9聚体KRAS-G12V突变新抗原的TCR。研究构建了相应TCR-T细胞;与表达KRAS-G12V突变的不同肿瘤细胞共培养时,细胞可分泌细胞因子并产生细胞毒作用。此外,在雌性小鼠临床前模型中,1-2C TCR-T细胞显示抗肿瘤活性。9聚体KRAS-G12V突变肽与9聚体野生型肽及其10聚体对应肽具有不同构象。TCR对G12V突变的特异性识别既依赖于其相较野生型肽的独特构象,也依赖于与TCR残基的直接相互作用。本研究揭示了KRAS-G12V突变肽的呈递和TCR识别机制,并描述了具有肿瘤免疫治疗潜力的TCR。
KRAS mutations are broadly recognized as promising targets for tumor therapy. T cell receptors (TCRs) can specifically recognize KRAS mutant neoantigens presented by human lymphocyte antigen (HLA) and mediate T cell responses to eliminate tumor cells. In the present study, we identify two TCRs specific for the 9-mer KRAS-G12V mutant neoantigen in the context of HLA-A*11:01. The TCR-T cells are constructed and display cytokine secretion and cytotoxicity upon co-culturing with varied tumor cells expressing the KRAS-G12V mutation.
Moreover, 1-2C TCR-T cells show anti-tumor activity in preclinical models in female mice. The 9-mer KRAS-G12V mutant peptide exhibits a distinct conformation from the 9-mer wildtype peptide and its 10-mer counterparts. Specific recognition of the G12V mutant by TCR depends both on distinct conformation from wildtype peptide and on direct interaction with residues from TCRs.
Our study reveals the mechanisms of presentation and TCR recognition of KRAS-G12V mutant peptide and describes TCRs with therapeutic potency for tumor immunotherapy.
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