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Protein kinase B/Akt signals impair Th17 differentiation and support natural regulatory T cell function and induced regulatory T cell formation

Pierau M, Engelmann S, Reinhold D +3 more2009The Journal of ImmunologyJournal Article
10.4049/jimmunol.0900246PubMedFree full text
Immune/InnateNeurological

Abstract

Abstract Protein kinase B (PKB)/Akt signals control T cell proliferation and differentiation but their effect on the generation and function of regulatory T cells (Treg) and Th17 cells is not well understood. In this study, we show that elevated PKB signals antagonize the immunosuppressive effect of TGF-β1 on cell size, CD25 and CD98 expression, and proliferation of CD3-stimulated naive CD4+ T cells from wild-type and CD28-deficient mice. Conventional CD4+ T cells expressing active PKB are less susceptible to suppression by natural regulatory T cells. Although PKB signals do not affect the development of natural regulatory T cells, they enhance their suppressor capacity. Upon TCR triggering and TGF-β1 costimulation, wild-type and CD28-deficient CD4+ T cells transgenic for PKB readily express Foxp3, thereby acquiring suppressor capacity. These effects of elevated PKB signals on T cell function involve a marked and sustained activation of STAT5 and Foxp3 and reduction in nuclear NFATc1 levels. In contrast, PKB signals impair TGF-β1/IL-6-mediated differentiation of naive CD4+ T cells into the Th17 lineage. This correlates with an increased signaling of ERK, STAT5, and STAT6. Finally, elevated PKB signals reduced the severity of experimental autoimmune encephalomyelitis in wild-type mice but induced experimental autoimmune encephalomyelitis in mice deficient for CD28. Altogether, these data indicate an important role of PKB signals on control of TGF-β1-mediated T cell responses and, thereby, on tolerizing and inflammatory immune processes.

Key Biomarkers

CD25CD98Foxp3IL-6NFATc1PKB/AktSTAT5STAT6TGF-β1

Cited By (1)

  • FOXO transcription factors throughout T cell biologyNature reviews. Immunology · 2012

References (5)

  • TGF-β1-Mediated Control of Central Nervous System Inflammation and Autoimmunity through the Inhibitory Receptor CD26The Journal of Immunology · 2007
  • 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
  • Generation Ex Vivo of TGF-β-Producing Regulatory T Cells from CD4+CD25− PrecursorsThe Journal of Immunology · 2002
  • SHIP regulates the reciprocal development of T regulatory and Th17 cellsThe Journal of Immunology · 2009
  • IL-17 and Th17 cellsAnnual Review of Immunology · 2009

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