Discovery of a Selective Islet Peptidome Presented by the Highest-Risk HLA-DQ8trans Molecule

Author:

van Lummel Menno1,van Veelen Peter A.1,de Ru Arnoud H.1,Pool Jos1,Nikolic Tatjana1,Laban Sandra1,Joosten Antoinette1,Drijfhout Jan W.1,Gómez-Touriño Iria2,Arif Sefina2,Aanstoot Henk J.3,Peakman Mark2,Roep Bart O.14

Affiliation:

1. Department of Immunohematology and Blood Transfusion, Leiden University Medical Center, Leiden, the Netherlands

2. Department of Immunobiology, School of Medicine, King’s College London, London, U.K.

3. Diabeter, Center for Pediatric and Adolescent Diabetes Care and Research, Rotterdam, the Netherlands

4. Department of Diabetes Immunology, Diabetes & Metabolism Research Institute at the Beckman Research Institute of City of Hope, Duarte, CA

Abstract

HLA-DQ2/8 heterozygous individuals are at far greater risk for type 1 diabetes (T1D) development by expressing HLA-DQ8trans on antigen-presenting cells compared with HLA-DQ2 or -DQ8 homozygous individuals. Dendritic cells (DC) initiate and shape adaptive immune responses by presenting HLA-epitope complexes to naïve T cells. To dissect the role of HLA-DQ8trans in presenting natural islet epitopes, we analyzed the islet peptidome of HLA-DQ2, -DQ8, and -DQ2/8 by pulsing DC with preproinsulin (PPI), IA-2, and GAD65. Quality and quantity of islet epitopes presented by HLA-DQ2/8 differed from -DQ2 or -DQ8. We identified two PPI epitopes solely processed and presented by HLA-DQ2/8 DC: an HLA-DQ8trans–binding signal-sequence epitope previously identified as CD8 T-cell epitope and a second epitope that we previously identified as CD4 T-cell epitope with increased binding to HLA-DQ8trans upon posttranslational modification. IA-2 epitopes retrieved from HLA-DQ2/8 and -DQ8 DC bound to HLA-DQ8cis/trans. No GAD65 epitopes were eluted from HLA-DQ. T-cell responses were detected against the novel islet epitopes in blood from patients with T1D but scantly detected in healthy donor subjects. We report the first PPI and IA-2 natural epitopes presented by highest-risk HLA-DQ8trans. The selective processing and presentation of HLA-DQ8trans–binding islet epitopes provides insight in the mechanism of excessive genetic risk imposed by HLA-DQ2/8 heterozygosity and may assist immune monitoring of disease progression and therapeutic intervention as well as provide therapeutic targets for immunotherapy in subjects at risk for T1D.

Funder

Juvenile Diabetes Research Foundation International

European Union’s 7th Framework Programme

Netherlands Organisation for Scientific Research

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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