IL-17A activates ERK1/2 and enhances differentiation of oligodendrocyte progenitor cells.
Jane M Rodgers, Andrew P Robinson, Elen S Rosler, Karen Lariosa-Willingham, Rachael E Persons, Jason C Dugas, Stephen D Miller
文献索引:Glia 63(5) , 768-79, (2015)
全文:HTML全文
摘要
Inflammatory signals present in demyelinated multiple sclerosis lesions affect the reparative remyelination process conducted by oligodendrocyte progenitor cells (OPCs). Interferon-γ (IFN-γ), tumor necrosis factor-α (TNF-α), and interleukin (IL)-6 have differing effects on the viability and growth of OPCs, however the effects of IL-17A are largely unknown. Primary murine OPCs were stimulated with IL-17A and their viability, proliferation, and maturation were assessed in culture. IL-17A-stimulated OPCs exited the cell cycle and differentiated with no loss in viability. Expression of the myelin-specific protein, proteolipid protein, increased in a cerebellar slice culture assay in the presence of IL-17A. Downstream, IL-17A activated ERK1/2 within 15 min and induced chemokine expression in 2 days. These results demonstrate that IL-17A exposure stimulates OPCs to mature and participate in the inflammatory response.© 2014 Wiley Periodicals, Inc.
相关化合物
相关文献:
2014-12-01
[Tissue Eng. Part A 20(23-24) , 3163-75, (2014)]
2015-02-04
[J. Neurosci. 35(5) , 1999-2014, (2015)]
2014-12-01
[Biochem. Pharmacol. 92(3) , 467-75, (2014)]
2014-12-01
[J. Virol. 88(23) , 13669-77, (2014)]
2014-12-20
[FEBS Lett. 588(24) , 4784-90, (2014)]