DRB4* 01: 01 has a distinct motif and presents a proinsulin epitope that is recognized in subjects with type 1 diabetes

EA James, L Gillette, I Durinovic-Bello… - The Journal of …, 2018 - journals.aai.org
EA James, L Gillette, I Durinovic-Bello, C Speake, GP Bondinas, AK Moustakas
The Journal of Immunology, 2018journals.aai.org
Abstract DRB4* 01: 01 (DRB4) is a secondary HLA-DR product that is part of the high-risk
DR4/DQ8 haplotype that is associated with type 1 diabetes (T1D). DRB4 shares
considerable homology with HLA-DR4 alleles that predispose to autoimmunity, including
DRB1* 04: 01 and DRB1* 04: 04. However, the DRB4 protein sequence includes distinct
residues that would be expected to alter the characteristics of its binding pockets. To identify
high-affinity peptides that are recognized in the context of DRB4, we used an HLA class II …
Abstract
DRB4* 01: 01 (DRB4) is a secondary HLA-DR product that is part of the high-risk DR4/DQ8 haplotype that is associated with type 1 diabetes (T1D). DRB4 shares considerable homology with HLA-DR4 alleles that predispose to autoimmunity, including DRB1* 04: 01 and DRB1* 04: 04. However, the DRB4 protein sequence includes distinct residues that would be expected to alter the characteristics of its binding pockets. To identify high-affinity peptides that are recognized in the context of DRB4, we used an HLA class II tetramer-based approach to identify epitopes within multiple viral Ags. We applied a similar approach to identify antigenic sequences within glutamic acid decarboxylase 65 and pre-proinsulin that are recognized in the context of DRB4. Seven sequences were immunogenic, eliciting high-affinity T cell responses in DRB4+ subjects. DRB1* 04: 01-restricted responses toward many of these peptides have been previously described, but responses to a novel pre-proinsulin 9–28 peptide were commonly observed in subjects with T1D. Furthermore, T cells that recognized this peptide in the context of DRB4 were present at significantly higher frequencies in patients with T1D than in healthy controls, implicating this as a disease-relevant specificity that may contribute to the breakdown of β cell tolerance in genetically susceptible individuals. We then deduced a DRB4 motif and confirmed its key features through structural modeling. This modeling suggested that the core epitope within the pre-proinsulin 9–28 peptide has a somewhat unusual binding motif, with tryptophan in the fourth binding pocket of DRB4, perhaps influencing the availability of this complex for T cell selection.
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