Rinderknecht Cornelia H, Belmares Michael P, Catanzarite Tatiana L W, Bankovich Alexander J, Holmes Tyson H, Garcia K Christopher, Nanda Navreet K, Busch Robert, Kovats Susan, Mellins Elizabeth D
Program in Immunology, Department of Pediatrics, Stanford University, Stanford, CA 94305, USA.
J Immunol. 2007 Nov 1;179(9):5907-15. doi: 10.4049/jimmunol.179.9.5907.
Several MHC class II alleles linked with autoimmune diseases form unusually low stability complexes with CLIP, leading us to hypothesize that this is an important feature contributing to autoimmune pathogenesis. To investigate cellular consequences of altering class II/CLIP affinity, we evaluated invariant chain (Ii) mutants with varying CLIP affinity for a mouse class II allele, I-E(d), which has low affinity for wild-type CLIP and is associated with a mouse model of spontaneous, autoimmune joint inflammation. Increasing CLIP affinity for I-E(d) resulted in increased cell surface and total cellular abundance and half-life of I-E(d). This reveals a post-endoplasmic reticulum chaperoning capacity of Ii via its CLIP peptides. Quantitative effects on I-E(d) were less pronounced in DM-expressing cells, suggesting complementary chaperoning effects mediated by Ii and DM, and implying that the impact of allelic variation in CLIP affinity on immune responses will be highest in cells with limited DM activity. Differences in the ability of cell lines expressing wild-type or high-CLIP-affinity mutant Ii to present Ag to T cells suggest a model in which increased CLIP affinity for class II serves to restrict peptide loading to DM-containing compartments, ensuring proper editing of antigenic peptides.
几种与自身免疫性疾病相关的MHC II类等位基因与CLIP形成异常低稳定性的复合物,这使我们推测这是导致自身免疫发病机制的一个重要特征。为了研究改变II类/CLIP亲和力的细胞后果,我们评估了对小鼠II类等位基因I-E(d)具有不同CLIP亲和力的恒定链(Ii)突变体,该等位基因对野生型CLIP亲和力低,且与一种自发性自身免疫性关节炎症的小鼠模型相关。增加CLIP对I-E(d)的亲和力导致I-E(d)的细胞表面和总细胞丰度以及半衰期增加。这揭示了Ii通过其CLIP肽在内质网后伴侣功能。在表达DM的细胞中对I-E(d)的定量影响不太明显,表明Ii和DM介导互补的伴侣效应,并暗示CLIP亲和力的等位基因变异对免疫反应的影响在DM活性有限的细胞中最高。表达野生型或高CLIP亲和力突变体Ii的细胞系向T细胞呈递抗原的能力差异提示了一个模型,其中II类对CLIP亲和力的增加有助于将肽加载限制在含DM的区室,确保对抗原肽的正确编辑。