Auphan-Anezin Nathalie, Mazza Catherine, Guimezanes Annick, Barrett-Wilt Gregory A, Montero-Julian Felix, Roussel Alain, Hunt Donald F, Malissen Bernard, Schmitt-Verhulst Anne-Marie
Centre d'Immunologie de Marseille-Luminy, CNRS-INSERM-Universite de la Méditerranée, Campus de Luminy, Marseille, France.
Eur J Immunol. 2006 Jul;36(7):1856-66. doi: 10.1002/eji.200635895.
We have characterized three different programs of activation for alloreactive CD8 T cells expressing the BM3.3 TCR, their elicitation depending on the characteristics of the stimulating peptide/MHC complex. The high-affinity interaction between the TCR and the K(b)-associated endogenous peptide pBM1 (INFDFNTI) induced a complete differentiation program into effector cells correlated with sustained ERK activation. The K(bm8) variant elicited a partial activation program with delayed T cell proliferation, poor CTL activity and undetectable ERK phosphorylation; this resulted from a low-avidity interaction of TCR BM3.3 with a newly identified endogenous peptide, pBM8 (SQYYYNSL). Interestingly, mismatched pBM1/K(bm8) complexes induced a split response in BM3.3 T cells, with total reconstitution of T cell proliferation but defective generation of CTL activity that was correlated with strong but shortened ERK phosphorylation. Crystal structures highlight the molecular basis for the higher stability of pBM8/K(bm8) compared to pBM1/K(bm8) complexes that exist in two conformers. This study illustrates the importance of the stability of both peptide/MHC and peptide/MHC-TCR interactions for induction of sustained signaling required to induce optimal CTL effector functions. Subtle allelic structural variations, amplified by peptide selection, may thus orient distinct outcomes of alloreactive TCR-based therapies.
我们已经对表达BM3.3 TCR的同种异体反应性CD8 T细胞的三种不同激活程序进行了表征,它们的诱导取决于刺激肽/MHC复合物的特性。TCR与K(b)相关内源性肽pBM1(INFDFNTI)之间的高亲和力相互作用诱导了一个完全分化为效应细胞的程序,这与持续的ERK激活相关。K(bm8)变体引发了一个部分激活程序,T细胞增殖延迟,CTL活性差且未检测到ERK磷酸化;这是由于TCR BM3.3与新鉴定的内源性肽pBM8(SQYYYNSL)的低亲和力相互作用所致。有趣的是,不匹配的pBM1/K(bm8)复合物在BM3.3 T细胞中诱导了一种分裂反应,T细胞增殖完全恢复,但CTL活性产生缺陷,这与强烈但短暂的ERK磷酸化相关。晶体结构突出了与存在两种构象的pBM1/K(bm8)复合物相比,pBM8/K(bm8)具有更高稳定性的分子基础。这项研究说明了肽/MHC和肽/MHC-TCR相互作用的稳定性对于诱导最佳CTL效应功能所需的持续信号传导的重要性。因此,通过肽选择放大的细微等位基因结构变异可能会导向基于同种异体反应性TCR疗法的不同结果。