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首页> 外文期刊>Journal of immunotherapy >Simultaneous coexpression of memory-related and effector-related genes by individual human CD8 T cells depends on antigen specificity and differentiation
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Simultaneous coexpression of memory-related and effector-related genes by individual human CD8 T cells depends on antigen specificity and differentiation

机译:单个人CD8 T细胞同时共表达记忆相关基因和效应子相关基因取决于抗原特异性和分化

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摘要

Phenotypic and functional cell properties are usually analyzed at the level of defined cell populations but not single cells. Yet, large differences between individual cells may have important functional consequences. It is likely that T-cell-mediated immunity depends on the polyfunctionality of individual T cells, rather than the sum of functions of responding T-cell subpopulations. We performed highly sensitive single-cell gene expression profiling, allowing the direct ex vivo characterization of individual virus-specific and tumor-specific T cells from healthy donors and melanoma patients. We have previously shown that vaccination with the natural tumor peptide Melan-A-induced T cells with superior effector functions as compared with vaccination with the analog peptide optimized for enhanced HLA-A*0201 binding. Here we found that natural peptide vaccination induced tumor-reactive CD8 T cells with frequent coexpression of both memory/homing-associated genes (CD27, IL7R, EOMES, CXCR3, and CCR5) and effector-related genes (IFNG, KLRD1, PRF1, and GZMB), comparable with protective Epstein-Barr virus-specific and cytomegalovirus-specific T cells. In contrast, memory/homing-associated and effector-associated genes were less frequently coexpressed after vaccination with the analog peptide. Remarkably, these findings reveal a previously unknown level of gene expression diversity among vaccine-specific and virus-specific T cells with the simultaneous coexpression of multiple memory/homing-related and effector-related genes by the same cell. Such broad functional gene expression signatures within antigen-specific T cells may be critical for mounting efficient responses to pathogens or tumors. In summary, direct ex vivo high-resolution molecular characterization of individual T cells provides key insights into the processes shaping the functional properties of tumor-specific and virus-specific T cells.
机译:表型和功能性细胞特性通常在定义的细胞群体水平上进行分析,而不是单细胞。然而,单个细胞之间的巨大差异可能会产生重要的功能后果。 T细胞介导的免疫可能取决于单个T细胞的多功能性,而不是响应T细胞亚群的功能总和。我们进行了高度敏感的单细胞基因表达谱分析,从而可以对来自健康供体和黑色素瘤患者的单个病毒特异性和肿瘤特异性T细胞进行直接离体表征。先前我们已经表明,与针对优化的HLA-A * 0201结合而优化的类似肽的疫苗接种相比,对天然肿瘤肽Melan-A诱导的T细胞进行疫苗接种具有更好的效应子功能。在这里,我们发现天然肽疫苗诱导的肿瘤反应性CD8 T细胞与记忆/归巢相关基因(CD27,IL7R,EOMES,CXCR3和CCR5)和效应子相关基因(IFNG,KLRD1,PRF1和GZMB),与保护性爱泼斯坦-巴尔病毒特异性和巨细胞病毒特异性T细胞相当。相反,用类似肽疫苗接种后,与记忆/归巢相关的基因和与效应子相关的基因较少共表达。值得注意的是,这些发现揭示了疫苗特异性和病毒特异性T细胞之间基因表达多样性的先前未知水平,并且同一细胞同时共表达多个记忆/归巢相关基因和效应子相关基因。抗原特异性T细胞内如此广泛的功能基因表达特征对于提高对病原体或肿瘤的有效反应可能至关重要。总之,单个T细胞的直接离体高分辨率分子表征为塑造肿瘤特异性和病毒特异性T细胞功能特性的过程提供了重要见识。

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