Peterson M, Sant A J
Department of Pathology, University of Chicago, IL 60637, USA.
J Immunol. 1998 Sep 15;161(6):2961-7.
Sequence variability in MHC class II molecules plays a major role in genetically determined susceptibility to insulin-dependent diabetes mellitus (IDDM). It is not yet clear whether MHC class II polymorphism allows selective binding of diabetogenic peptides or regulates some key intracellular events associated with class II-restricted Ag presentation. In this study, we have employed gene transfer techniques to analyze the intracellular events that control peptide acquisition by the unique class II molecule expressed by nonobese diabetic mice (I-Ag7). This structurally unique class II molecule fails to demonstrate stable binding to antigenic peptides and fails to undergo the conformational change associated with stable peptide binding to class II molecules. The experiments reported here demonstrate that I-Ag7 can productively associate with two protein cofactors important in class II-restricted Ag presentation, invariant chain (Ii) and DM. DM participates in the removal of the Ii-derived class II-associated Ii chain peptide and the p12 degradation product from the I-Ag7 molecule. In addition, I-Ag7 undergoes a conformational change when DM is expressed within the APC. Finally, DM can mediate accumulation of peptide/class II complexes on the surface of APCs. Collectively, our experiments indicate that the failure of the I-Ag7 molecule to stably bind peptide cannot be attributed to a failure to interact with the DM or Ii glycoproteins.
MHC II类分子中的序列变异性在胰岛素依赖型糖尿病(IDDM)的遗传易感性中起主要作用。目前尚不清楚MHC II类多态性是允许致糖尿病肽的选择性结合,还是调节与II类限制性抗原呈递相关的一些关键细胞内事件。在本研究中,我们采用基因转移技术来分析控制非肥胖糖尿病小鼠(I-Ag7)表达的独特II类分子获取肽的细胞内事件。这种结构独特的II类分子不能与抗原肽稳定结合,也不会经历与II类分子稳定肽结合相关的构象变化。本文报道的实验表明,I-Ag7可以与II类限制性抗原呈递中重要的两种蛋白质辅助因子,即恒定链(Ii)和DM有效结合。DM参与从I-Ag7分子中去除Ii衍生的II类相关Ii链肽和p12降解产物。此外,当DM在抗原呈递细胞内表达时,I-Ag7会发生构象变化。最后,DM可以介导肽/II类复合物在抗原呈递细胞表面的积累。总的来说,我们的实验表明,I-Ag7分子不能稳定结合肽不能归因于与DM或Ii糖蛋白相互作用的失败。