Wong P, Rudensky A Y
Howard Hughes Medical Institute, Department of Immunology, University of Washington School of Medicine, Seattle 98195, USA.
J Immunol. 1996 Mar 15;156(6):2133-42.
Mice bearing a targeted disruption of the gene encoding the invariant chain (Ii) have provided a deeper understanding of the critical role that Ii plays in the assembly, transport, and peptide occupancy of MHC class II molecules. In this study, we have investigated the consequence of the altered class II expression in Ii-deficient (Ii zero) mice on the phenotype and function of their CD4+ T cells. As seen by others, these mice show a sharp reduction in the CD4+8- subset in the thymus and periphery. Furthermore, a large proportion of the peripheral CD4+, but not CD8+, T cells in Ii zero mice exhibit decreased surface TCR-alpha beta levels and express markers of T cell activation. Although the CD4+ T cells respond to mitogens, anti-CD3 mAbs, and alloantigens, they respond poorly to the bacterial superantigen staphylococcal enterotoxin B and do not respond to peptide and protein Ags. Analysis of reciprocal radiation bone marrow chimeras constructed using Ii zero and wild-type mice indicate that the lack of Ii in the thymus is responsible for the phenotype of the CD4+ T cells in mutant mice. These results suggest that the altered thymic peptide repertoire displayed by class II molecules in the absence of Ii has a dramatic impact on the selection of CD4+ T cells and their phenotype in the periphery.
携带编码恒定链(Ii)基因靶向破坏的小鼠,使我们对Ii在MHC II类分子的组装、运输和肽占据中所起的关键作用有了更深入的了解。在本研究中,我们研究了Ii缺陷(Ii零)小鼠中II类表达改变对其CD4+ T细胞表型和功能的影响。正如其他人所观察到的,这些小鼠胸腺和外周的CD4+8-亚群急剧减少。此外,Ii零小鼠外周的大部分CD4+ T细胞(而非CD8+ T细胞)表面TCR-αβ水平降低,并表达T细胞活化标志物。尽管CD4+ T细胞对丝裂原、抗CD3单克隆抗体和同种异体抗原作出反应,但它们对细菌超抗原葡萄球菌肠毒素B反应不佳,对肽和蛋白质抗原无反应。使用Ii零小鼠和野生型小鼠构建的相互辐射骨髓嵌合体分析表明,胸腺中缺乏Ii是突变小鼠CD4+ T细胞表型的原因。这些结果表明,在缺乏Ii的情况下,II类分子所展示的胸腺肽库改变对外周CD4+ T细胞的选择及其表型有显著影响。