Williams C B, Engle D L, Kersh G J, Michael White J, Allen P M
Department of Pediatrics, Center for Immunology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
J Exp Med. 1999 May 17;189(10):1531-44. doi: 10.1084/jem.189.10.1531.
We have developed a unique in vivo system to determine the relationship between endogenous altered peptide ligands and the development of major histocompatibility complex class II- restricted T cells. Our studies use the 3.L2 T cell receptor (TCR) transgenic mouse, in which T cells are specific for Hb(64-76)/I-Ek and positively selected on I-Ek plus self-peptides. To this endogenous peptide repertoire, we have individually added one of six well-characterized 3.L2 ligands. This transgenic approach expands rather than constrains the repertoire of self-peptides. We find that a broad range of ligands produce negative selection of thymocytes in vivo. When compared with the in vitro TCR-ligand binding kinetics, we find that these negatively selecting ligands all have a half-life of 2 s or greater. Additionally, one of two ligands examined with no detectable binding to the 3.L2 TCR and no activity on mature 3.L2 T cells (Q72) enhances the positive selection of transgenic thymocytes in vivo. Together, these data establish a kinetic threshold between negative and positive selection based on the longevity of TCR-ligand complexes.
我们开发了一种独特的体内系统,以确定内源性改变的肽配体与主要组织相容性复合体II类限制性T细胞发育之间的关系。我们的研究使用3.L2 T细胞受体(TCR)转基因小鼠,其中T细胞对Hb(64 - 76)/I-Ek具有特异性,并在I-Ek加自身肽上进行阳性选择。对于这个内源性肽库,我们分别添加了六种特征明确的3.L2配体中的一种。这种转基因方法扩大而不是限制了自身肽的库。我们发现,多种配体在体内会导致胸腺细胞的阴性选择。与体外TCR-配体结合动力学相比,我们发现这些导致阴性选择的配体的半衰期均为2秒或更长。此外,所检测的两种配体中的一种与3.L2 TCR没有可检测到的结合,并且对成熟的3.L2 T细胞没有活性(Q72),但在体内增强了转基因胸腺细胞的阳性选择。这些数据共同基于TCR-配体复合物的寿命建立了阴性和阳性选择之间的动力学阈值。