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首页> 外文期刊>Human Molecular Genetics >A correlation between the relative predisposition of MHC class II alleles to type 1 diabetes and the structure of their proteins.
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A correlation between the relative predisposition of MHC class II alleles to type 1 diabetes and the structure of their proteins.

机译:MHC II类等位基因相对于1型糖尿病的相对易感性与其蛋白质结构之间的相关性。

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摘要

In human type 1 diabetes (T1D) and in its murine model, the major histocompatibility complex (MHC) class II molecules, human leukocyte antigens (HLA)-DQ and -DR and their murine orthologues, IA and IE, are the major genetic determinants. In this report, we have ranked HLA class II molecule-associated T1D risk in a two-sided gradient from very high to very low. Very low risk corresponded to dominant protection from T1D. We predicted the protein structure of DQ by using the published crystal structures of different allotypes of the murine orthologue of DQ, IA. We discovered marked similarities both within, and cross species between T1D protective class II molecules. Likewise, the T1D predisposing molecules showed conserved similarities that contrasted with the shared patterns observed between the protective molecules. We also found striking inter-isotypic conservation between protective DQ, IA allotypes and protective DR4 subtypes. The data provide evidence for a joint action of the class II peptide-binding pockets P1, P4 and P9 in disease susceptibility and resistance with a main role for P9 in DQ/IA and for P1 and P4 in DR/IE. Overall, these results suggest shared epitope(s) in the target autoantigen(s), and common pathways in human and murine T1D.
机译:在人类1型糖尿病(T1D)及其鼠模型中,主要的组织相容性复合体(MHC)II类分子,人类白细胞抗原(HLA)-DQ和-DR及其鼠类直向同源物IA和IE是主要的遗传决定因素。在本报告中,我们将HLA II类分子相关的T1D风险从非常高到非常低的两个侧面分级。极低的风险对应于T1D的主要保护。我们通过使用IA的DQ小鼠直系同源物的不同同种异型的已公开晶体结构来预测DQ的蛋白质结构。我们发现T1D保护性II类分子之间以及它们之间的明显相似性。同样,T1D易感分子表现出保守的相似性,与保护性分子之间观察到的共享模式形成对比。我们还发现保护性DQ,IA同种异型和保护性DR4亚型之间惊人的同型间保守性。数据提供了II类肽结合口袋P1,P4和P9在疾病易感性和抗药性中的联合作用的证据,其中P9在DQ / IA中以及P1和P4在DR / IE中起主要作用。总体而言,这些结果表明目标自身抗原中具有相同的表位,以及人和鼠T1D中的常见途径。

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