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Dominant protection from HLA-linked autoimmunity by antigen-specific regulatory T cells

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DOI

  • Joshua D Ooi, Monash University
  • ,
  • Jan Petersen
  • Yu H Tan, Monash University
  • ,
  • Megan Huynh, Monash University
  • ,
  • Zoe J Willett, Monash University
  • ,
  • Sri H Ramarathinam, Monash University
  • ,
  • Peter J Eggenhuizen, Monash University
  • ,
  • Khai L Loh, Monash University
  • ,
  • Katherine A Watson, Department of Microbiology and Immunology, The Peter Doherty Institute for Infection and Immunity, University of Melbourne, Melbourne, Victoria 3010, Australia.
  • ,
  • Poh Y Gan, Monash University
  • ,
  • Maliha A Alikhan, Monash University
  • ,
  • Nadine L Dudek, Monash University
  • ,
  • Andreas Handel, Department of Epidemiology and Biostatistics, College of Public Health, University of Georgia, Athens, Georgia 30602, USA.
  • ,
  • Billy G Hudson, Vanderbilt University
  • ,
  • Lars Fugger
  • David A Power, University of Melbourne
  • ,
  • Stephen G Holt, Department of Nephrology, The Royal Melbourne Hospital, Parkville, Victoria 3050, Australia.
  • ,
  • P Toby Coates, Central Northern Adelaide Renal and Transplantation Service, Royal Adelaide Hospital, Adelaide, South Australia 5000, Australia.
  • ,
  • Jon W Gregersen, Regional Hospital of Viborg
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  • Anthony W Purcell, Monash University
  • ,
  • Stephen R Holdsworth, Monash Health
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  • Nicole L La Gruta, Department of Microbiology and Immunology, The Peter Doherty Institute for Infection and Immunity, University of Melbourne, Melbourne, Victoria 3010, Australia.
  • ,
  • Hugh H Reid, Monash University
  • ,
  • Jamie Rossjohn, Cardiff University
  • ,
  • A Richard Kitching, Monash Health

Susceptibility and protection against human autoimmune diseases, including type I diabetes, multiple sclerosis, and Goodpasture disease, is associated with particular human leukocyte antigen (HLA) alleles. However, the mechanisms underpinning such HLA-mediated effects on self-tolerance remain unclear. Here we investigate the molecular mechanism of Goodpasture disease, an HLA-linked autoimmune renal disorder characterized by an immunodominant CD4(+) T-cell self-epitope derived from the α3 chain of type IV collagen (α3135-145). While HLA-DR15 confers a markedly increased disease risk, the protective HLA-DR1 allele is dominantly protective in trans with HLA-DR15 (ref. 2). We show that autoreactive α3135-145-specific T cells expand in patients with Goodpasture disease and, in α3135-145-immunized HLA-DR15 transgenic mice, α3135-145-specific T cells infiltrate the kidney and mice develop Goodpasture disease. HLA-DR15 and HLA-DR1 exhibit distinct peptide repertoires and binding preferences and present the α3135-145 epitope in different binding registers. HLA-DR15-α3135-145 tetramer(+) T cells in HLA-DR15 transgenic mice exhibit a conventional T-cell phenotype (Tconv) that secretes pro-inflammatory cytokines. In contrast, HLA-DR1-α3135-145 tetramer(+) T cells in HLA-DR1 and HLA-DR15/DR1 transgenic mice are predominantly CD4(+)Foxp3(+) regulatory T cells (Treg cells) expressing tolerogenic cytokines. HLA-DR1-induced Treg cells confer resistance to disease in HLA-DR15/DR1 transgenic mice. HLA-DR15(+) and HLA-DR1(+) healthy human donors display altered α3135-145-specific T-cell antigen receptor usage, HLA-DR15-α3135-145 tetramer(+) Foxp3(-) Tconv and HLA-DR1-α3135-145 tetramer(+) Foxp3(+)CD25(hi)CD127(lo) Treg dominant phenotypes. Moreover, patients with Goodpasture disease display a clonally expanded α3135-145-specific CD4(+) T-cell repertoire. Accordingly, we provide a mechanistic basis for the dominantly protective effect of HLA in autoimmune disease, whereby HLA polymorphism shapes the relative abundance of self-epitope specific Treg cells that leads to protection or causation of autoimmunity.

Original languageEnglish
JournalNature
Volume545
Issue7653
Pages (from-to)243-247
Number of pages5
ISSN0028-0836
DOIs
Publication statusPublished - 11 May 2017

    Research areas

  • Journal Article

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