Abstract B078: Unbiased identification of CD4+ T-cell epitopes using novel MHC-based chimeric receptors

J. Kisielow, F. Obermair, M. Kopf
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引用次数: 0

Abstract

αβT-cell receptors (TCRs) bind peptide-major histocompatibility complexes (pMHC) with low affinity, posing a considerable challenge for direct identification of αβT-cell cognate peptides (epitopes). Here, we describe a platform for the discovery of MHC class-II presented epitopes, based on screening of engineered reporter cells expressing novel pMHC-TCR (MCR) hybrid molecules carrying cDNA-derived peptides. This technology identifies natural epitopes of CD4 T-cells in an unbiased and efficient manner and allows detailed analysis of TCR cross-reactivity providing recognition patterns on top of discrete epitopes. We identify cognate peptides of virus- and tumor-specific T-cells in mouse disease models and present a proof of concept for human T-cells. Furthermore, we show that vaccination with a peptide naturally recognized by TILs can efficiently protect from tumor challenge. Thus, the MCR technology holds promise for basic research and clinical applications allowing personalized identification of T-cell antigens in patients. Citation Format: Jan Kisielow, Franz-Josef Obermair, Manfred Kopf. Unbiased identification of CD4+ T-cell epitopes using novel MHC-based chimeric receptors [abstract]. In: Proceedings of the Fourth CRI-CIMT-EATI-AACR International Cancer Immunotherapy Conference: Translating Science into Survival; Sept 30-Oct 3, 2018; New York, NY. Philadelphia (PA): AACR; Cancer Immunol Res 2019;7(2 Suppl):Abstract nr B078.
B078:利用新型mhc嵌合受体无偏性鉴定CD4+ t细胞表位
αβ t细胞受体(tcr)与肽-主要组织相容性复合体(pMHC)结合的亲和力较低,这给αβ t细胞同源肽(表位)的直接鉴定带来了相当大的挑战。在这里,我们描述了一个发现MHC ii类表位的平台,基于筛选表达新型pMHC-TCR (MCR)杂化分子携带dna衍生肽的工程报告细胞。该技术以公正有效的方式识别CD4 t细胞的天然表位,并允许对TCR交叉反应性进行详细分析,提供离散表位顶部的识别模式。我们在小鼠疾病模型中鉴定了病毒特异性和肿瘤特异性t细胞的同源肽,并提出了人类t细胞概念的证明。此外,我们发现用TILs自然识别的肽接种疫苗可以有效地保护肿瘤免受攻击。因此,MCR技术有望在基础研究和临床应用中实现患者t细胞抗原的个性化鉴定。引用格式:Jan Kisielow, Franz-Josef obermaair, Manfred Kopf。利用新型mhc嵌合受体无偏鉴定CD4+ t细胞表位[摘要]。第四届CRI-CIMT-EATI-AACR国际癌症免疫治疗会议:将科学转化为生存;2018年9月30日至10月3日;纽约,纽约。费城(PA): AACR;癌症免疫学杂志,2019;7(2增刊):摘要nr B078。
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