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Fringe Controls Naïve CD4(+)T Cells Differentiation Through Modulating Notch Signaling in Asthmatic Rat Models

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Journal PLoS One
Date 2012 Oct 17
PMID 23071776
Citations 17
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Abstract

The ability of Notch signaling to regulate T helper cell development and differentiation has been widely accepted. Fringe, O-fucose-β1,3-N-acetylglucosaminyltransferases modulate Notch receptor expression and promote the Notch signaling pathway through receptor-ligand binding. In this study, we assayed the expression levels of three Fringe homologs in naive CD4(+)T cells in asthmatic rats. We found that Radical Fringe (Rfng) was highly expressed, whereas both Lunatic Fringe (Lfng) and Manic Fringe (Mfng) were expressed at low levels. Down-regulation of Rfng using siRNA, and overexpression of Lfng or Mfng enhanced Th1 subset lineages and diminished Th2 subset lineages. Notch signaling was more activated in asthmatic naïve CD4(+)T cells than in control cells, and Lfng, but not Mfng or Rfng, partly inhibited Notch signaling in asthmatic naïve CD4(+)T lymphocytes. Lfng overexpression resulted in significantly decreased Th2 cytokine production in asthma, which was the same effect as the GSI (γ-secretase inhibitor) treatment alone, but had an increased effect on Th1 cytokines than GSI treatment. Collectively, these data identify the essential role of Fringe modulating naïve CD4(+)T cells differentiation through Notch signaling. Lfng regulated Th2 cells differentiation via a Notch-dependent manner and Th1 cells differentiation via a Notch-independent manner. Fringe could be a therapeutic strategy for the management and prevention of allergic asthma.

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References
1.
Stanley P . Regulation of Notch signaling by glycosylation. Curr Opin Struct Biol. 2007; 17(5):530-5. PMC: 2141538. DOI: 10.1016/j.sbi.2007.09.007. View

2.
Johnston S, Rauskolb C, Wilson R, Prabhakaran B, Irvine K, Vogt T . A family of mammalian Fringe genes implicated in boundary determination and the Notch pathway. Development. 1997; 124(11):2245-54. DOI: 10.1242/dev.124.11.2245. View

3.
Haines N, Irvine K . Glycosylation regulates Notch signalling. Nat Rev Mol Cell Biol. 2003; 4(10):786-97. DOI: 10.1038/nrm1228. View

4.
Haltiwanger R . Regulation of signal transduction pathways in development by glycosylation. Curr Opin Struct Biol. 2002; 12(5):593-8. DOI: 10.1016/s0959-440x(02)00371-8. View

5.
Minter L, Turley D, Das P, Shin H, Joshi I, Lawlor R . Inhibitors of gamma-secretase block in vivo and in vitro T helper type 1 polarization by preventing Notch upregulation of Tbx21. Nat Immunol. 2005; 6(7):680-8. View