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系统发现患者和肿瘤类型之间共享的新抗原的新表位-HLA 对

英文原题:Systematic discovery of neoepitope-HLA pairs for neoantigens shared among patients and tumor types.

查看英文原题

Systematic discovery of neoepitope-HLA pairs for neoantigens shared among patients and tumor types.

PubMed 2023/10/19(内容时间) Nat Biotechnol Q1 · IF 44.5(JCR 2025)

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中文摘要

精准癌症免疫治疗的广泛应用受到限制,原因之一是经过验证、且在不同患者或肿瘤类型间共有的新表位数量有限。为扩展已知的共享新抗原-人白细胞抗原(HLA)复合物谱,本研究开发了一个高通量平台,将体外肽-HLA结合实验与工程化细胞模型相结合;这些模型表达单个HLA等位基因,并携带一个串联转基因,其中含有47种常见癌症新抗原。在24,000余种可能的新表位-HLA组合中,生化和计算分析筛选出844种独特候选组合;随后通过对工程化单等位基因细胞系开展免疫沉淀质谱分析,验证了其中86种。为评估免疫原性潜力,研究鉴定出可识别部分新表位-HLA组合的T细胞受体;将这些受体导入人T细胞后,可诱导其产生反应。这些细胞系统以及关于具有治疗相关性的新表位及其HLA背景的数据,将有助于研究者开展抗原加工和新表位靶向疗法研究。

展开英文摘要原文

The broad application of precision cancer immunotherapies is limited by the number of validated neoepitopes that are common among patients or tumor types. To expand the known repertoire of shared neoantigen-human leukocyte antigen (HLA) complexes, we developed a high-throughput platform that coupled an in vitro peptide-HLA binding assay with engineered cellular models expressing individual HLA alleles in combination with a concatenated transgene harboring 47 common cancer neoantigens.

From more than 24,000 possible neoepitope-HLA combinations, biochemical and computational assessment yielded 844 unique candidates, of which 86 were verified after immunoprecipitation mass spectrometry analyses of engineered, monoallelic cell lines.

To evaluate the potential for immunogenicity, we identified T cell receptors that recognized select neoepitope-HLA pairs and elicited a response after introduction into human T cells. These cellular systems and our data on therapeutically relevant neoepitopes in their HLA contexts will aid researchers studying antigen processing as well as neoepitope targeting therapies.

论文信息

作者
Gurung HR、Heidersbach AJ、Darwish M、Chan PPF、Li J、Beresini M、Zill OA、Wallace A
第一作者单位
Genentech, South San Francisco, CA, USA.United States
通讯作者单位
Genentech, South San Francisco, CA, USA. rose.christopher@gene.com.United States
期刊
Nature biotechnology2024 Jul
原文标识
PubMed 37857725 · DOI 10.1038/s41587-023-01945-y