4.6 Article

The B10 Idd9.3 Locus Mediates Accumulation of Functionally Superior CD137+ Regulatory T Cells in the Nonobese Diabetic Type 1 Diabetes Model

Journal

JOURNAL OF IMMUNOLOGY
Volume 189, Issue 10, Pages 5001-5015

Publisher

AMER ASSOC IMMUNOLOGISTS
DOI: 10.4049/jimmunol.1101013

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Funding

  1. National Institutes of Health [U19AI56374, ADA 1-11-BS-131]
  2. Biomedical Laboratory Research and Development Service of the Veterans Affairs Office of Research and Development [I01BX007080]
  3. Juvenile Diabetes Research Foundation
  4. Wellcome Trust
  5. Wellcome Trust Strategic Award [079895]
  6. Immune Tolerance Network [AI 15416]
  7. National Institute of Allergy and Infectious Diseases
  8. National Institute of Diabetes and Digestive and Kidney Diseases
  9. Juvenile Diabetes Research Foundation International
  10. Merck Genome Research Institute

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CD137 is a T cell costimulatory molecule encoded by the prime candidate gene (designated Tnfrsf9) in NOD.B10 Idd9.3 congenic mice protected from type 1 diabetes (T1D). NOD T cells show decreased CD137-mediated T cell signaling compared with NOD. B10 Idd9.3 T cells, but it has been unclear how this decreased CD137 T cell signaling could mediate susceptibility to T1D. We and others have shown that a subset of regulatory T cells (Tregs) constitutively expresses CD137 (whereas effector T cells do not, and only express CD137 briefly after activation). In this study, we show that the B10 Idd9.3 region intrinsically contributes to accumulation of CD137(+) Tregs with age. NOD.B10 Idd9.3 mice showed significantly increased percentages and numbers of CD137(+) peripheral Tregs compared with NOD mice. Moreover, Tregs expressing the B10 Idd9.3 region preferentially accumulated in mixed bone marrow chimeric mice reconstituted with allotypically marked NOD and NOD.B10 Idd9.3 bone marrow. We demonstrate a possible significance of increased numbers of CD137(+) Tregs by showing functional superiority of FACS-purified CD137(+) Tregs in vitro compared with CD137(-) Tregs in T cell-suppression assays. Increased functional suppression was also associated with increased production of the alternatively spliced CD137 isoform, soluble CD137, which has been shown to suppress T cell proliferation. We show for the first time, to our knowledge, that CD137(+) Tregs are the primary cellular source of soluble CD137. NOD.B10 Idd9.3 mice showed significantly increased serum soluble CD137 compared with NOD mice with age, consistent with their increased numbers of CD137(+) Tregs with age. These studies demonstrate the importance of CD137(+) Tregs in T1D and offer a new hypothesis for how the NOD Idd9.3 region could act to increase T1D susceptibility. The Journal of Immunology, 2012, 189: 5001-5015.

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