γδ T 细胞调节小细胞肺癌中的抗肿瘤免疫
γδ T cells modulate anti-tumor immunity in small cell lung cancer.
我们的发现表明,活化的γδ T细胞可能是SCLC治疗的有价值靶点。
英文原题:Dual-degenerate TCRs target multiple KRAS hotspot and HLA-A3 family combinations.
我们的研究强调了成功生成多价KRAS特异性TCR,并支持通过TCR工程在肺癌中靶向共享KRAS新抗原的可行性。
致癌性KRAS突变驱动了相当比例的肺癌,并与不良预后相关,使KRAS成为细胞免疫治疗的有力靶点。35%的肺腺癌携带KRAS G12C、G12V、G12D突变。在此,我们开发了HLA-A*03:01和HLA-A*11:01限制性T细胞受体(TCR),靶向肺腺癌中最常见的G12C和G12V KRAS热点突变。通过我们的TCR发现和验证流程筛选预测的高亲和力肽段,并进行功能评估以确定TCR工程化T细胞的敏感性、特异性和细胞毒性潜力。我们发现并验证了5个靶向KRAS G12C和G12V 9聚体的新型TCR,每个TCR均表现出识别并裂解在HLA-A*03:01或HLA-A*11:01上内源性呈递突变KRAS的肿瘤细胞的能力。值得注意的是,多个TCR表现出不同的交叉反应模式,包括跨KRAS G12变体的肽段简并性、跨HLA-A*03:01和HLA-A*11:01的HLA简并性,或同时跨KRAS和HLA的双重简并性,从而拓宽了可治疗的目标人群。在多名肺癌患者中发现了识别KRAS热点共享序列基序的TCR。我们的研究强调了成功生成多价KRAS特异性TCR,并支持通过TCR工程在肺癌中靶向共享KRAS新抗原的可行性。
Oncogenic KRAS mutations drive a substantial proportion of lung cancers and are linked to poor prognosis, positioning KRAS as a compelling target for cellular immunotherapy. Thirty-five percent of lung adenocarcinomas harbor the KRAS G12C, G12V, G12D mutations. Here, we developed HLA-A*03:01- and HLA-A*11:01-restricted T cell receptors (TCR) targeting the most prevalent G12C and G12V KRAS hotspot mutations in lung adenocarcinoma. Predicted high affinity peptides were screened using our TCR discovery and validation pipeline, and functional assessment was performed to determine sensitivity, specificity, and cytotoxic potential of TCR-engineered T cells. We discovered and validated 5 novel TCRs targeting KRAS G12C and G12V 9-mers, each of which demonstrated an ability to recognize and lyse tumor cells endogenously presenting mutant KRAS on HLA-A*03:01 or HLA-A*11:01. Notably, several TCRs demonstrated distinct modes of cross-reactivity, including peptide degeneracy across KRAS G12 variants, HLA degeneracy across HLA-A*03:01 and HLA-A*11:01, or dual degeneracy across both KRAS and HLA, thereby broadening the treatable target populations. TCRs that recognize the KRAS hotspot shared sequence motifs were found in several lung cancer patients. Our study highlights the successful generation of multi-valent KRAS-specific TCRs and supports the feasibility of targeting shared KRAS neoantigens through TCR engineering in lung cancer.
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