McConnell H M, Wada H G, Arimilli S, Fok K S, Nag B
Chemistry Department, Stanford University, CA 94305-5080, USA.
Proc Natl Acad Sci U S A. 1995 Mar 28;92(7):2750-4. doi: 10.1073/pnas.92.7.2750.
Activation of CD4+ T cells by antigenic peptide involves the interaction of major histocompatibility complex (MHC) class II-peptide complexes on the surface of antigen-presenting cells (APCs) with T-cell receptors. This report describes the kinetics of T-cell triggering by exogenous antigenic peptides in the presence of APCs. A rapid specific increase in extracellular acidification rate is observed within minutes upon exposure of A.E7 T cells (restricted for IEk and moth cytochrome c peptide containing residues 88-103) and 4R3.9 T cells (restricted for IAk and myelin basic protein peptide containing residues 1-14 [AcMBP-(1-14)]) to their cognate peptides in the presence of CH27 cells bearing both IAk and IEk MHC class II molecules. Pretreatment of cloned T cells, but not APCs, with herbimycin A resulted in complete inhibition of triggering events, indicating that the acidification response is mediated by T-cell second messenger pathways. This rapid assay for 4R3.9 T-cell stimulation showed increased T-cell triggering activity for AcMBP-(1-14)-A4 and MBP-(1-14)-M4 peptides compared to the native AcMBP-(1-14)-K4. By using the previously determined kinetic constants for MBP-(1-14)-A4 reactions with IAk, it is possible to show that at the lowest peptide concentrations the kinetics of T-cell triggering are limited by the kinetics of the peptide binding to MHC class II molecules.
抗原肽激活CD4 + T细胞涉及抗原呈递细胞(APC)表面的主要组织相容性复合体(MHC)II类 - 肽复合物与T细胞受体的相互作用。本报告描述了在APC存在下外源性抗原肽触发T细胞的动力学。在携带IAk和IEk MHC II类分子的CH27细胞存在下,将A.E7 T细胞(受IEk限制,含有88 - 103位残基的蛾细胞色素c肽)和4R3.9 T细胞(受IAk限制,含有1 - 14位残基的髓鞘碱性蛋白肽[AcMBP-(1 - 14)])暴露于其同源肽后几分钟内,观察到细胞外酸化率迅速特异性增加。用除草菌素A预处理克隆的T细胞而非APC,导致触发事件完全抑制,表明酸化反应是由T细胞第二信使途径介导的。这种对4R3.9 T细胞刺激的快速检测显示,与天然的AcMBP-(1 - 14)-K4相比,AcMBP-(1 - 14)-A4和MBP-(1 - 14)-M4肽的T细胞触发活性增加。通过使用先前确定的MBP-(1 - 14)-A4与IAk反应的动力学常数,可以表明在最低肽浓度下,T细胞触发的动力学受肽与MHC II类分子结合动力学的限制。