[HTML][HTML] TGF-β signaling initiated in dendritic cells instructs suppressive effects on Th17 differentiation at the site of neuroinflammation

S Speck, J Lim, S Shelake, M Matka, J Stoddard… - PLoS …, 2014 - journals.plos.org
S Speck, J Lim, S Shelake, M Matka, J Stoddard, A Farr, V Kuchroo, Y Laouar
PLoS One, 2014journals.plos.org
While the role of Transforming Growth Factor β (TGF-β) as an intrinsic pathway has been
well established in driving de novo differentiation of Th17 cells, no study has directly
assessed the capacity of TGF-β signaling initiated within dendritic cells (DCs) to regulate
Th17 differentiation. The central finding of this study is the demonstration that Th17 cell fate
during autoimmune inflammation is shaped by TGF-β extrinsic pathway via DCs. First, we
provide evidence that TGF-β limits at the site of inflammation the differentiation of highly …
While the role of Transforming Growth Factor β (TGF-β) as an intrinsic pathway has been well established in driving de novo differentiation of Th17 cells, no study has directly assessed the capacity of TGF-β signaling initiated within dendritic cells (DCs) to regulate Th17 differentiation. The central finding of this study is the demonstration that Th17 cell fate during autoimmune inflammation is shaped by TGF-β extrinsic pathway via DCs. First, we provide evidence that TGF-β limits at the site of inflammation the differentiation of highly mature DCs as a means of restricting Th17 cell differentiation and controlling autoimmunity. Second, we demonstrate that TGF-β controls DC differentiation in the inflammatory site but not in the priming site. Third, we show that TGF-β controls DC numbers at a precursor level but not at a mature stage. While it is undisputable that TGF-β intrinsic pathway drives Th17 differentiation, our data provide the first evidence that TGF-β can restrict Th17 differentiation via DC suppression but such a control occurs in the site of inflammation, not at the site of priming. Such a demarcation of the role of TGF-β in DC lineage is unprecedented and holds serious implications vis-à-vis future DC-based therapeutic targets.
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