Extraislet expression of islet antigen boosts T cell exhaustion to partially prevent autoimmune diabetes

Author:

Selck Claudia12,Jhala Gaurang1ORCID,De George David J.12ORCID,Kwong Chun-Ting J.12,Christensen Marie K.12ORCID,Pappas Evan G.1,Liu Xin12,Ge Tingting12,Trivedi Prerak12,Kallies Axel3,Thomas Helen E.12ORCID,Kay Thomas W. H.12ORCID,Krishnamurthy Balasubramanian12ORCID

Affiliation:

1. Immunology and Diabetes Unit, St. Vincent’s Institute, Fitzroy, VIC 3065, Australia

2. Department of Medicine, St. Vincent’s Hospital, University of Melbourne, Fitzroy, VIC 3065, Australia

3. Department of Microbiology and Immunology, The Peter Doherty Institute for Infection and Immunity, University of Melbourne, Melbourne, VIC 3000, Australia

Abstract

Persistent antigen exposure results in the differentiation of functionally impaired, also termed exhausted, T cells which are maintained by a distinct population of precursors of exhausted T (T PEX ) cells. T cell exhaustion is well studied in the context of chronic viral infections and cancer, but it is unclear whether and how antigen-driven T cell exhaustion controls progression of autoimmune diabetes and whether this process can be harnessed to prevent diabetes. Using nonobese diabetic (NOD) mice, we show that some CD8+ T cells specific for the islet antigen, islet-specific glucose-6-phosphatase catalytic subunit–related protein (IGRP) displayed terminal exhaustion characteristics within pancreatic islets but were maintained in the T PEX cell state in peripheral lymphoid organs (PLO). More IGRP-specific T cells resided in the PLO than in islets. To examine the impact of extraislet antigen exposure on T cell exhaustion in diabetes, we generated transgenic NOD mice with inducible IGRP expression in peripheral antigen-presenting cells. Antigen exposure in the extraislet environment induced severely exhausted IGRP-specific T cells with reduced ability to produce interferon (IFN)γ, which protected these mice from diabetes. Our data demonstrate that T cell exhaustion induced by delivery of antigen can be harnessed to prevent autoimmune diabetes.

Funder

DHAC | NHMRC | National Institute for Dementia Research

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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