MHC-Linked Susceptibility to Type 1 Diabetes
- 1 November 2003
- journal article
- Published by Wiley in Annals of the New York Academy of Sciences
- Vol. 1005 (1) , 119-127
- https://doi.org/10.1196/annals.1288.013
Abstract
The MHC represents the most important susceptibility locus for type 1 diabetes, and the MHC class II alleles that encode DQ8 and DQ2 in humans and I-A(g7) in NOD mice represent critical elements. Even though these genetic facts have been known for a number of years, the biochemical and structural features of these MHC class II molecules have only been elucidated recently. We expressed DQ8 and I-A(g7) as soluble proteins and observed significant structural and functional similarities between these human and murine MHC molecules. It had been postulated that I-A(g7) and DQ8 are poor peptide binders, based on the observation that the subunits dissociate in the presence of SDS, a denaturing detergent. We observed that both DQ8 and I-A(g7) form stable, long-lived complexes with a number of different peptides, indicating that they are not unstable in the absence of detergent. DQ8 and I-A(g7) were found to bind similar sets of peptides, which included peptides that had been identified as immunodominant T cell epitopes of insulin and GAD 65 in NOD mice. The insulin B (9-23) peptide formed long-lived complexes with DQ8 and was thus chosen for crystallization of the complex. No defect in the peptide binding groove was evident in the crystal structure and the insulin peptide was deeply anchored in the binding site. The structure demonstrated significant similarities between DQ8 and I-A(g7), indicating that similar antigen presentation events are relevant in the NOD mouse model and the human disease.Keywords
This publication has 26 references indexed in Scilit:
- A disease-associated cellular immune response in type 1 diabetics to an immunodominant epitope of insulinJournal of Clinical Investigation, 2001
- A Structural Framework for Deciphering the Link Between I-A g7 and Autoimmune DiabetesScience, 2000
- An autoimmune disease, APECED, caused by mutations in a novel gene featuring two PHD-type zinc-finger domainsNature Genetics, 1997
- Insulin expression in human thymus is modulated by INS VNTR alleles at the IDDM2 locusNature Genetics, 1997
- Genetic Control of Autoimmune Diabetes in the Nod MouseAnnual Review of Immunology, 1995
- Insulin‐specific T cells are a predominant component of islet infiltrates in pre‐diabetic NOD miceEuropean Journal of Immunology, 1994
- Crystal structure of the human class II MHC protein HLA-DR1 complexed with an influenza virus peptideNature, 1994
- I-E+ nonobese diabetic mice develop insulitis and diabetes.The Journal of Experimental Medicine, 1993
- Prevention of insulin-dependent diabetes mellitus in non-obese diabetic mice by transgenes encoding modified I-A β-chain or normal I-E α-chainNature, 1990
- HLA-DQβ gene contributes to susceptibility and resistance to insulin-dependent diabetes mellitusNature, 1987