← 返回

克服突变 KRAS 表位翻译后修饰导致的免疫逃逸以实现 TCR-T 细胞介导的抗肿瘤活性

英文原题:Overcoming immune evasion from post-translational modification of a mutant KRAS epitope to achieve TCR-T cell-mediated antitumor activity.

查看英文原题

Overcoming immune evasion from post-translational modification of a mutant KRAS epitope to achieve TCR-T cell-mediated antitumor activity.

PubMed 2024/10/14(内容时间) bioRxiv

分数与星级只用于站内排序 —— 不代表疗效、安全性或个人适用性。

中文摘要

T 细胞受体(TCR)T 细胞免疫疗法通过工程化改造使 T 细胞表达靶向肿瘤表位的 TCR,属于过继性细胞治疗(ACT),在多种肿瘤中显示出前景。致癌蛋白 KRAS 的突变,尤其是甘氨酸 12(G12)位点突变,是肿瘤发生的常见驱动因素,因此成为 TCR-T 细胞治疗的理想靶点。

然而,尽管已有证据表明包含此类突变的表位可与 HLA-A2 结合并诱导 T 细胞应答,针对表达最常见人类 HLA-A 等位基因 HLA-A2 的肿瘤、且特异识别 G12 突变 KRAS 表位的 I 类限制性 TCR 仍未能成功获得。

我们报告,这一表位的翻译后修饰(PTM)可能使肿瘤细胞逃避免疫压力。一种赖氨酸侧链甲基化的 KRAS G12V 肽,而非未修饰表位,可能由肿瘤细胞通过 HLA-A2 呈递,并影响 TCR 识别。

我们采用一种新颖的计算引导方法,通过诱变构建出可识别该甲基化肽的 TCR,从而增强肿瘤识别与杀伤。此外,通过使用修饰肽刺激原代 T 细胞、克隆扩增和筛选,我们还从正常 T 细胞库中鉴定出具有相似功能活性的 TCR。在机制层面,通过基因敲除筛选肿瘤细胞甲基化或去甲基化该表位的机制,我们发现 SPT6 是一种去甲基化蛋白,可作为靶点提升这些新型 TCR 的效力。

我们的发现凸显 PTM 在免疫逃逸中的作用,并提示,识别和靶向此类修饰有望使有效 ACT 应用于远超当前治疗格局所覆盖范围的肿瘤。单句总结:肿瘤细胞对 HLA-A2 呈递的 KRAS G12V 表位进行甲基化可实现免疫逃逸;研究者已开发新型 TCR,以工程化细胞治疗克服这一问题。

展开英文摘要原文

UNLABELLED: T cell receptor (TCR)-T cell immunotherapy, in which T cells are engineered to express a TCR targeting a tumor epitope, is a form of adoptive cell therapy (ACT) that has exhibited promise against various tumor types. Mutants of oncoprotein KRAS, particularly at glycine-12 (G12), are frequent drivers of tumorigenicity, making them attractive targets for TCR-T cell therapy.

However, class I-restricted TCRs specifically targeting G12-mutant KRAS epitopes in the context of tumors expressing HLA-A2, the most common human HLA-A allele, have remained elusive despite evidence an epitope encompassing such mutations can bind HLA-A2 and induce T cell responses.

We report post-translational modifications (PTMs) on this epitope may allow tumor cells to evade immunologic pressure from TCR-T cells. A lysine side chain-methylated KRAS G12V peptide, rather than the unmodified epitope, may be presented in HLA-A2 by tumor cells and impact TCR recognition. Using a novel computationally guided approach, we developed by mutagenesis TCRs that recognize this methylated peptide, enhancing tumor recognition and destruction.

Additionally, we identified TCRs with similar functional activity in normal repertoires from primary T cells by stimulation with modified peptide, clonal expansion, and selection.

Mechanistically, a gene knockout screen to identify mechanism(s) by which tumor cells methylate/demethylate this epitope unveiled SPT6 as a demethylating protein that could be targeted to improve effectiveness of these new TCRs.

Our findings highlight the role of PTMs in immune evasion and suggest identifying and targeting such modifications should make effective ACTs available for a substantially greater range of tumors than the current therapeutic landscape. ONE-SENTENCE SUMMARY: Tumor cell methylation of KRAS G12V epitope in HLA-A2 permits immune evasion, and new TCRs were generated to overcome this with engineered cell therapy.

论文信息

作者
Lee JW、Chen EY、Hu T、Perret R、Chaffee ME、Martinov T、Mureli S、McCurdy CL
文献类型
预印本
期刊
bioRxiv : the preprint server for biology2024 Oct 14
原文标识
PubMed 39345486 · DOI 10.1101/2024.09.18.612965