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Normalized Synergy Predicts That CD8 Co-Receptor Contribution to T Cell Receptor (TCR) and pMHC Binding Decreases As TCR Affinity Increases in Human Viral-Specific T Cells

机译:标准化的协同作用可预测随着TCR亲和力在人病毒特异性T细胞中的增加CD8共同受体对T细胞受体(TCR)和pMHC结合的贡献会降低。

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摘要

The discovery of naturally occurring T cell receptors (TCRs) that confer specific, high-affinity recognition of pathogen and cancer-associated antigens remains a major goal in cellular immunotherapies. The contribution of the CD8 co-receptor to the interaction between the TCR and peptide-bound major histocompatibility complex (pMHC) has previously been correlated with the activation and responsiveness of CD8+ T cells. However, these studies have been limited to model systems of genetically engineered hybridoma TCRs or transgenic mouse TCRs against either a single epitope or an array of altered peptide ligands. CD8 contribution in a native human antigen-specific T cell response remains elusive. Here, using Hepatitis C Virus-specific precursor CTLs spanning a large range of TCR affinities, we discovered that the functional responsiveness of any given TCR correlated with the contribution of CD8 to TCR/pMHC binding. Furthermore, we found that CD8 contribution to TCR/pMHC binding in the two-dimensional (2D) system was more accurately reflected by normalized synergy (CD8 cooperation normalized by total TCR/pMHC bonds) rather than synergy (total CD8 cooperation) alone. While synergy showed an increasing trend with TCR affinity, normalized synergy was demonstrated to decrease with the increase of TCR affinity. Critically, normalized synergy was shown to correlate with CTL functionality and peptide sensitivity, corroborating three-dimensional (3D) analysis of CD8 contribution with respect to TCR affinity. In addition, we identified TCRs that were independent of CD8 for TCR/pMHC binding. Our results resolve the current discrepancy between 2D and 3D analysis on CD8 contribution to TCR/pMHC binding, and demonstrate that naturally occurring high-affinity TCRs are more capable of CD8-independent interactions that yield greater functional responsiveness even with CD8 blocking. Taken together, our data suggest that addition of the normalized synergy parameter to our previously established TCR discovery platform using 2D TCR affinity and sequence test would allow for selection of TCRs specific to any given antigen with the desirable attributes of high TCR affinity, CD8 co-receptor independence and functional superiority. Utilizing TCRs with less CD8 contribution could be beneficial for adoptive cell transfer immunotherapies using naturally occurring or genetically engineered T cells against viral or cancer-associated antigens.
机译:赋予病原体和癌症相关抗原特异性,高亲和力的天然T细胞受体(TCR)的发现仍然是细胞免疫治疗的主要目标。 CD8共受体对TCR与肽结合的主要组织相容性复合物(pMHC)之间相互作用的贡献先前与CD8 + T细胞的活化和反应性相关。但是,这些研究仅限于针对单个表位或改变的肽配体阵列的基因工程杂交瘤TCR或转基因小鼠TCR的模型系统。 CD8在天然人类抗原特异性T细胞反应中的作用仍然难以捉摸。在这里,我们使用跨大范围TCR亲和力的丙型肝炎病毒特异性前体CTL,我们发现任何给定TCR的功能反应性都与CD8对TCR / pMHC结合的贡献相关。此外,我们发现二维(2D)系统中CD8对TCR / pMHC结合的贡献更准确地由标准化协同作用(CD8合作由总TCR / pMHC键标准化)而不是单独的协同作用(总CD8合作)反映出来。虽然协同作用显示出TCR亲和力增加的趋势,但是标准化的协同作用却随着TCR亲和力的增加而降低。至关重要的是,已证明归一化的协同作用与CTL功能和肽敏感性相关,从而证实了CD8对TCR亲和力的贡献的三维(3D)分析。此外,我们确定了独立于CD8的TCR / pMHC结合的TCR。我们的结果解决了目前关于CD8对TCR / pMHC结合的2D和3D分析之间的差异,并证明了天然存在的高亲和力TCR更具有CD8独立的相互作用能力,即使具有CD8阻断作用,也能产生更大的功能响应性。综上所述,我们的数据表明,使用2D TCR亲和力和序列测试将归一化的协同参数添加到我们先前建立的TCR发现平台中,将可以选择具有高TCR亲和力,CD8 co-受体独立性和功能优势。利用CD8贡献较少的TCR,对于使用天然存在的或基因工程改造的T细胞针对病毒或癌症相关抗原的过继细胞转移免疫疗法可能是有益的。

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