STAT6 Inhibits TGF-beta1-mediated Foxp3 induction through direct binding to the Foxp3 promoter, which is reverted by retinoic acid receptor.
J Biol Chem. 2008 May 30; 283(22):14955-62
J Biol Chem. 2008 May 30; 283(22):14955-62
Achsah Keegan, University of Maryland School of Medicine, MD, USA. F1000 Immunology
08 Sep 2008 | New Finding, Novel Drug Target
This article is of note because it demonstrates that transforming growth factor beta (TGFb)-regulated expression of Foxp3 in inducible regulatory T cells (iTregs) is transient and directly suppressed by interleukin (IL)-4 via STAT6.
IL-4 suppressed the TGFb-mediated induction of Foxp3 mRNA by activating STAT6; activated STAT6 bound directly to the Foxp3 promoter, thus, mediating transcriptional repression.
Interestingly, this IL-4-mediated effect was reversed by retinoic acid, suggesting a novel therapeutic approach to allergy and asthma.
Keegan A: "This article is of note because it demonstrates that transforming growth factor beta (TGFb)-..." Evaluation of: [Takaki H et al. STAT6 Inhibits TGF-beta1-mediated Foxp3 induction through direct binding to the Foxp3 promoter, which is reverted by retinoic acid receptor. J Biol Chem. 2008 May 30; 283(22):14955-62; doi: 10.1074/jbc.M801123200]. Faculty of 1000, 08 Sep 2008. F1000.com/1120594#eval576806
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Keegan A: 2008. F1000.com/1120594#eval576806
Faculty of 1000 evaluations, dissents and comments for [Takaki H et al. STAT6 Inhibits TGF-beta1-mediated Foxp3 induction through direct binding to the Foxp3 promoter, which is reverted by retinoic acid receptor. J Biol Chem. 2008 May 30; 283(22):14955-62; doi: 10.1074/jbc.M801123200]. Faculty of 1000, 08 Sep 2008. F1000.com/1120594
Short form
Faculty of 1000: 2008. F1000.com/1120594
It has been shown that transforming growth factor beta1 (TGF-beta1) is critical in the generation of CD4(+)CD25(+)Foxp3(+)-inducible regulatory T cells (iTregs) from naïve CD4(+)T cells. However, in contrast to natural Tregs, TGF-beta1-induced iTregs rapidly lose both Foxp3 expression and suppression activity. We found that TGF-beta1-induced Foxp3 levels were maintained by the addition of the anti-interleukin 4 (IL-4) antibody or by STAT6 gene deletion. Thus, IL-4 is an important suppressor of Foxp3 induction, and T helper 2 development is a major cause for the disappearance of iTreg during long culture. Using promoter analysis in EL4 cells and primary T cells, we identified a silencer region containing a STAT6 binding site. STAT6 binding to this site reduced TGF-beta1-mediated Foxp3 promoter activation and chromatin modification. Retinoic acid has also been shown to suppress loss of Foxp3 induced by TGF-beta1. Retinoic acid in the presence of TGF-beta1 reduced STAT6 binding to the Foxp3 promoter and enhanced histone acetylation, thereby reverting the effect of IL-4. We propose that antagonistic agents for neutralizing IL-4 could be a novel strategy to facilitate inducible Treg cell generation and the promotion of tolerance in Th2-dominated diseases such as allergy.
DOI: 10.1074/jbc.M801123200
PMID: 18400747
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