Kanagawa O, Vaupel B A, Xu G, Unanue E R, Katz J D
Department of Pathology, Center for Immunology, Washington University School of Medicine, St. Louis, MO 63110, USA.
J Immunol. 1998 Nov 1;161(9):4489-92.
The diabetes-susceptible class II MHC genes (in human and mouse) share unique nonaspartic acid residues at position 57 of the class II beta-chain. Transgenic expression of a mutant I-A(g7), substituting histidine and serine at position 56 and 57 of beta-chain with proline and aspartic acid (I-A(g7)PD), respectively, inhibits diabetes development in the nonobese diabetic mouse model. Here, we demonstrate that immature thymocytes expressing a diabetogenic islet Ag-specific transgenic TCR are positively selected by I-A(g7)PD class II MHC to give rise to mature CD4+ T cells. However, splenic APCs expressing the same I-A(g7)PD fail to present pancreatic islet Ag to mature T cells bearing this diabetogenic TCR. These results indicate that nonaspartic acid residues at position 57 of class II MHC beta-chain is important for diabetogenic CD4+ T cell activation in the periphery but is not essential for the formation of a diabetogenic T cell repertoire in the thymus.
糖尿病易感的II类主要组织相容性复合体(MHC)基因(人类和小鼠中)在II类β链的第57位共享独特的非天冬氨酸残基。一种突变的I-A(g7)的转基因表达,分别用脯氨酸和天冬氨酸替代β链第56和57位的组氨酸和丝氨酸(I-A(g7)PD),可抑制非肥胖糖尿病小鼠模型中的糖尿病发展。在此,我们证明表达致糖尿病胰岛抗原特异性转基因TCR的未成熟胸腺细胞被I-A(g7)PD II类MHC阳性选择,从而产生成熟的CD4+ T细胞。然而,表达相同I-A(g7)PD的脾抗原呈递细胞(APC)无法将胰岛抗原呈递给携带这种致糖尿病TCR的成熟T细胞。这些结果表明,II类MHCβ链第57位的非天冬氨酸残基对于外周致糖尿病CD4+ T细胞的激活很重要,但对于胸腺中致糖尿病T细胞库的形成并非必不可少。