Sir William Dunn School of Pathology, University of Oxford, Oxford OX1 3RE, UK.
Immunity. 2010 Feb 26;32(2):163-74. doi: 10.1016/j.immuni.2009.11.013. Epub 2010 Feb 4.
T cell receptor (TCR) binding to diverse peptide-major histocompatibility complex (pMHC) ligands results in various degrees of T cell activation. Here we analyze which binding properties of the TCR-pMHC interaction are responsible for this variation in pMHC activation potency. We have analyzed activation of the 1G4 cytotoxic T lymphocyte clone by cognate pMHC variants and performed thorough correlation analysis of T cell activation with 1G4 TCR-pMHC binding properties measured in solution. We found that both the on rate (k(on)) and off rate (k(off)) contribute to activation potency. Based on our results, we propose a model in which rapid TCR rebinding to the same pMHC after chemical dissociation increases the effective half-life or "confinement time" of a TCR-pMHC interaction. This confinement time model clarifies the role of k(on) in T cell activation and reconciles apparently contradictory reports on the role of TCR-pMHC binding kinetics and affinity in T cell activation.
T 细胞受体 (TCR) 与多样化的肽-主要组织相容性复合体 (pMHC) 配体结合,导致 T 细胞的激活程度不同。在这里,我们分析 TCR-pMHC 相互作用的哪些结合特性导致了 pMHC 激活效力的这种变化。我们已经分析了同源 pMHC 变体对 1G4 细胞毒性 T 淋巴细胞克隆的激活作用,并在溶液中测量了 1G4 TCR-pMHC 结合特性,对 T 细胞激活进行了彻底的相关分析。我们发现,结合速率 (k(on)) 和解离速率 (k(off)) 都与激活效力有关。基于我们的结果,我们提出了一个模型,其中 TCR 在化学解离后快速重新结合到相同的 pMHC 上,增加了 TCR-pMHC 相互作用的有效半衰期或“约束时间”。这个约束时间模型阐明了 k(on) 在 T 细胞激活中的作用,并调和了关于 TCR-pMHC 结合动力学和亲和力在 T 细胞激活中的作用的明显矛盾的报告。