4.7 Article

Following the Fate of One Insulin-Reactive CD4 T cell Conversion Into Teffs and Tregs in the Periphery Controls Diabetes in NOD Mice

Journal

DIABETES
Volume 61, Issue 5, Pages 1169-1179

Publisher

AMER DIABETES ASSOC
DOI: 10.2337/db11-0671

Keywords

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Funding

  1. U01 National Institute of Allergy and Infectious Diseases prevention center
  2. National Institutes of Health [DK-32083]
  3. Autoimmunity Prevention Center [AI050864]
  4. Diabetes Endocrine Research Center [P30-DK-57516]
  5. Juvenile Diabetes Research Foundation [4-2007-1056, 11-2005-15]
  6. Children's Diabetes Foundation
  7. Brehm Coalition

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In diabetic patients and susceptible mice, insulin is a targeted autoantigen. Insulin B chain 9-23 (B:9-23) autoreactive CD4 T cells are key for initiating autoimmune diabetes in NOD mice; however, little is known regarding their origin and function. To this end, B:9-23-specific, BDC12-4.1 T-cell receptor (TCR) transgenic (Tg) mice were studied, of which, despite expressing a single TCR on the recombination activating gene-deficient background, only a fraction develops diabetes in an asynchronous manner. BDC12-4.1 CD4 T cells convert into effector (Teff) and Foxp3(+)-expressing adaptive regulatory T cells (aTregs) soon after leaving the thymus as a result of antigen recognition and homeostatic proliferation. The generation of aTreg causes the heterogeneous diabetes onset, since crossing onto the scurfy (Foxp3) mutation, BDC12-4.1 TCR Tg mice develop accelerated and fully penetrant diabetes. Similarly, adoptive transfer and bone marrow transplantation experiments showed differential diabetes kinetics based on Foxp3(+) aTreg's presence in the BDC12-4.1 donors. A single-specificity, insulin-reactive TCR escapes thymic deletion and simultaneously converts into aTreg and Teff, establishing an equilibrium that determines diabetes penetrance. These results are of particular importance for understanding disease pathogenesis. They suggest that once central tolerance is bypassed, autoreactive cells arriving in the periphery do not by default follow solely a pathogenic fate upon activation. Diabetes 61:1169-1179, 2012

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