Department of Microbiology and Immunology, Emory University, Atlanta, GA , USA.
Front Immunol. 2013 Jul 3;4:170. doi: 10.3389/fimmu.2013.00170. eCollection 2013.
The capacity to probe antigen specific T cells within the polyclonal repertoire has been revolutionized by the advent of recombinant peptide:MHC (pMHC) technology. Monomers and multimers of pMHC molecules can enrich for and identify antigen specific T cells to elucidate the contributions of T cell frequency, localization, and T cell receptor (TCR) affinity during immune responses. Two-dimensional (2D) measurements of TCR-pMHC interactions are at the forefront of this field because the biological topography is replicated such that TCR and pMHC are membrane anchored on opposing cells, allowing for biologically pertinent measures of TCR antigen specificity and diversity. 2D measurements of TCR-pMHC kinetics have also demonstrated increased fidelity compared to three-dimensional surface plasmon resonance data and are capable of detecting T cell affinities that are below the detection level of most pMHC multimers. Importantly, 2D techniques provide a platform to evaluate T cell affinity and antigen specificity against multiple protein epitopes within the polyclonal repertoire directly ex vivo from sites of ongoing immune responses. This review will discuss how antigen specific pMHC molecules, with a focus on 2D technologies, can be used as effective tools to evaluate the range of TCR affinities that comprise an immune response and more importantly how the breadth of affinities determine functional outcome against a given exposure to antigen.
抗原特异性 T 细胞的探测能力在重组多肽:主要组织相容性复合物(pMHC)技术出现后得到了革命性的发展。pMHC 分子的单体和多聚体可以富集和鉴定抗原特异性 T 细胞,以阐明免疫反应过程中 T 细胞频率、定位和 T 细胞受体(TCR)亲和力的贡献。二维(2D)TCR-pMHC 相互作用的测量处于这一领域的前沿,因为生物拓扑结构被复制,使得 TCR 和 pMHC 都在相对细胞上膜锚定,从而可以对 TCR 抗原特异性和多样性进行生物学上相关的测量。与三维表面等离子体共振数据相比,TCR-pMHC 动力学的 2D 测量也显示出更高的保真度,并且能够检测到大多数 pMHC 多聚体检测水平以下的 T 细胞亲和力。重要的是,2D 技术提供了一个平台,可以直接从正在进行免疫反应的部位,在多克隆反应范围内评估针对多个蛋白质表位的 T 细胞亲和力和抗原特异性。这篇综述将讨论如何使用抗原特异性 pMHC 分子(重点是 2D 技术)作为有效工具来评估构成免疫反应的 TCR 亲和力范围,更重要的是,亲和力的广度如何决定针对特定抗原暴露的功能结果。