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Inflammation-Induced Citrullinated Glucose-Regulated Protein 78 Elicits Immune Responses in Human Type 1 Diabetes.

Citation
Buitinga, M., et al. “Inflammation-Induced Citrullinated Glucose-Regulated Protein 78 Elicits Immune Responses In Human Type 1 Diabetes.”. Diabetes, pp. 2337-2348.
Center Yale University
Author Mijke Buitinga, Aïsha Callebaut, Fernanda Marques Câmara Sodré, Inne Crèvecoeur, Gabriele Blahnik-Fagan, Mei-Ling Yang, Marco Bugliani, David Arribas-Layton, Meghan Marré, Dana P Cook, Etienne Waelkens, Roberto Mallone, Jon D Piganelli, Piero Marchetti, Mark J Mamula, Rita Derua, Eddie A James, Chantal Mathieu, Lut Overbergh
Abstract

The β-cell has become recognized as a central player in the pathogenesis of type 1 diabetes with the generation of neoantigens as potential triggers for breaking immune tolerance. We report that posttranslationally modified glucose-regulated protein 78 (GRP78) is a novel autoantigen in human type 1 diabetes. When human islets were exposed to inflammatory stress induced by interleukin-1β, tumor necrosis factor-α, and interferon-γ, arginine residue R510 within GRP78 was converted into citrulline, as evidenced by liquid chromatography-tandem mass spectrometry. This conversion, known as citrullination, led to the generation of neoepitopes, which effectively could be presented by HLA-DRB1*04:01 molecules. With the use of HLA-DRB1*04:01 tetramers and ELISA techniques, we demonstrate enhanced antigenicity of citrullinated GRP78 with significantly increased CD4 T-cell responses and autoantibody titers in patients with type 1 diabetes compared with healthy control subjects. Of note, patients with type 1 diabetes had a predominantly higher percentage of central memory cells and a lower percentage of effector memory cells directed against citrullinated GRP78 compared with the native epitope. These results strongly suggest that citrullination of β-cell proteins, exemplified here by the citrullination of GRP78, contributes to loss of self-tolerance toward β-cells in human type 1 diabetes, indicating that β-cells actively participate in their own demise.

Year of Publication
2018
Journal
Diabetes
Volume
67
Issue
11
Number of Pages
2337-2348
Date Published
12/2018
ISSN Number
1939-327X
DOI
10.2337/db18-0295
Alternate Journal
Diabetes
PMID
30348823
PMCID
PMC6973547
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