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SHIP regulates the reciprocal development of T regulatory and Th17 cells

Locke N, Patterson S, Hamilton M +3 more2009The Journal of ImmunologyJournal Article
10.4049/jimmunol.0803749PubMed
GastrointestinalImmune/Innate

Abstract

Abstract Maintaining an appropriate balance between subsets of CD4+ Th and T regulatory cells (Tregs) is critical to maintain immune homeostasis and prevent autoimmunity. Through a common requirement for TGF-β, the development of peripherally induced Tregs is intimately linked to that of Th17 cells, with the resulting lineages depending on the presence of proinflammatory cytokines such as IL-6. Currently very little is known about the molecular signaling pathways that control the development of Tregs vs Th17 cells. Reduced activity of the PI3K pathway is required for TGF-β-mediated induction of Foxp3 expression and the suppressive activity of Tregs. To investigate how negative regulators of the PI3K pathway impact Treg development, we investigated whether SHIP, a lipid phosphatase that regulates PI3K activity, also plays a role in the development and function of Tregs. SHIP-deficient Tregs maintained suppressive capacity in vitro and in a T cell transfer model of colitis. Surprisingly, SHIP-deficient Th cells were significantly less able to cause colitis than were wild-type Th cells due to a profound deficiency in Th17 cell differentiation, both in vitro and in vivo. The inability of SHIP-deficient T cells to develop into Th17 cells was accompanied by decreased IL-6-stimulated phosphorylation of STAT3 and an increased capacity to differentiate into Treg cells under the influence of TGF-β and retinoic acid. These data indicate that SHIP is essential for normal Th17 cell development and that this lipid phosphatase plays a key role in the reciprocal regulation of Tregs and Th17 cells.

Key Biomarkers

Foxp3IL-6SHIPSTAT3TGF-betaTh17Tregs

Cited By (3)

  • Epigenetic mechanisms of regulation of FoxP3 expressionBlood · 2009
  • Protein kinase B/Akt signals impair Th17 differentiation and support natural regulatory T cell function and induced regulatory T cell formationThe Journal of Immunology · 2009
  • Increased Th17 cell frequency concomitant with decreased FoxP3+ Treg cell frequency in the peripheral circulation of patients with carotid artery plaquesInflammation Research · 2012

References (5)

  • Conversion of Peripheral CD4+CD25− Naive T Cells to CD4+CD25+ Regulatory T Cells by TGF-β Induction of Transcription Factor Foxp3The Journal of Experimental Medicine · 2003
  • A critical function for TGF-β signaling in the development of natural CD4+CD25+Foxp3+ regulatory T cellsNature Immunology · 2008
  • IL-6–gp130–STAT3 in T cells directs the development of IL-17+ Th with a minimum effect on that of Treg in the steady stateInternational Immunology · 2007

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