4.6 Article

Jagged1 Regulates the Activation of Astrocytes Via Modulation of NFκB and JAK/STAT/SOCS Pathways

Journal

GLIA
Volume 57, Issue 16, Pages 1741-1753

Publisher

WILEY-LISS
DOI: 10.1002/glia.20887

Keywords

inflammation; gliosis; Notch; Hes1

Categories

Funding

  1. National Research Fund
  2. Ministry of Culture, Higher Education and Research and the University of Luxembourg

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The Notch pathway is implicated in many aspects of the central nervous system (CNS) development and functions. Recently, we and others identified the Notch pathway to be involved in inflammatory events of the CNS. To understand the implication of this pathway on astrocytes, we have studied the Jagged-Notch-Hes pathway under inflammatory conditions. LPS exposure induced an upregulation of Jagged1 expression on cultured astrocytes. To address the role of Jagged1 in the modulation of inflammation, we used a siRNA mediated silencing of Jagged1 (siRNA J1). Jagged1 inhibition induced important variations on the Notch pathway components like Hes1, Hes5, Notch3, and RBP-J kappa. siRNA J1 repressed the mRNA expression of genes known as hallmarks of the gliosis like GFAP and endothelin(B) receptor. On activated astrocytes, the inhibition of Jagged1 had antiinflammatory effects and resulted in a decrease of LPS-induced proinflammatory cytokines (IL1 beta, IL1 alpha, and TNF alpha) as well as the iNOS expression. The inhibition of Jagged1 induced a modulation of the JAK/STAT/SOCS signaling pathway. Most interestingly, the siRNA J1 decreased the LPS-induced translocation of NF kappa B p65 and this could be correlated to the phosphorylation of I kappa B alpha. These results suggest that during inflammatory and gliotic events of the CNS, Jagged1/Notch signaling sustains the inflammation mainly through NF kappa B and in part through JAK/STAT/SOCS signaling pathways. (C) 2009 whey-Liss, Inc.,

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