The target autoantigens in several organ-specific autoimmune diseases, including type 1 diabetes (T1D), are intracellularmembrane proteins, whose initial encounter with the immune system is poorly understood. Here we propose a new model for how these proteins can initiate autoimmunity. We found that rat and human pancreatic islets release the intracellular β-cell autoantigens in human T1D, GAD65, IA-2, and proinsulin in exosomes, which are taken up by and activate dendritic cells. Accordingly, the anchoring of GAD65 to exosome-mimetic liposomes strongly boosted antigen presentation and T-cell activation in the context of the human T1D susceptibility haplotype HLADR4. Cytokine-induced endoplasmic reticulum stress enhanced exosome secretion by β-cells; induced exosomal release of the immunostimulatory chaperones calreticulin, Gp96, and ORP150; and increased exosomal stimulation of antigen-presenting cells. We propose that stress-induced exosomal release of intracellular autoantigens and immunostimulatory chaperonesmay play a role in the initiation of autoimmune responses in T1D. © 2017 by the American Diabetes Association.

Primary human and rat β-Cells release the intracellular autoantigens GAD65, IA-2, and proinsulin in exosomes together with cytokine-induced enhancers of immunity / Cianciaruso, C.; Phelps, E. A.; Pasquier, M.; Hamelin, R.; Demurtas, D.; Ahmed, M. A.; Piemonti, Lorenzo; Hirosue, S.; Swartz, M. A.; De Palma, M.; Hubbell, J. A.; Baekkeskov, S.. - In: DIABETES. - ISSN 0012-1797. - 66:2(2017), pp. 460-473. [10.2337/db16-0671]

Primary human and rat β-Cells release the intracellular autoantigens GAD65, IA-2, and proinsulin in exosomes together with cytokine-induced enhancers of immunity

PIEMONTI, LORENZO;
2017-01-01

Abstract

The target autoantigens in several organ-specific autoimmune diseases, including type 1 diabetes (T1D), are intracellularmembrane proteins, whose initial encounter with the immune system is poorly understood. Here we propose a new model for how these proteins can initiate autoimmunity. We found that rat and human pancreatic islets release the intracellular β-cell autoantigens in human T1D, GAD65, IA-2, and proinsulin in exosomes, which are taken up by and activate dendritic cells. Accordingly, the anchoring of GAD65 to exosome-mimetic liposomes strongly boosted antigen presentation and T-cell activation in the context of the human T1D susceptibility haplotype HLADR4. Cytokine-induced endoplasmic reticulum stress enhanced exosome secretion by β-cells; induced exosomal release of the immunostimulatory chaperones calreticulin, Gp96, and ORP150; and increased exosomal stimulation of antigen-presenting cells. We propose that stress-induced exosomal release of intracellular autoantigens and immunostimulatory chaperonesmay play a role in the initiation of autoimmune responses in T1D. © 2017 by the American Diabetes Association.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.11768/61149
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