4.6 Article

Survival and Migration of Human Dendritic Cells Are Regulated by an IFN-alpha-Inducible Axl/Gas6 Pathway

Journal

JOURNAL OF IMMUNOLOGY
Volume 183, Issue 5, Pages 3004-3013

Publisher

AMER ASSOC IMMUNOLOGISTS
DOI: 10.4049/jimmunol.0804384

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Funding

  1. Ministero dell'Istruzione Universita e Ricerca
  2. Programma di Ricerca Scientifica di Interesse Nazionale
  3. Regione Piemonte-Progetti di Ricerca Sanitaria Finalizzata e Applicata
  4. Fondazione Casse di Risparmio di Torino
  5. Deutsche Forschungsgemeinschaft
  6. Fondazione Italiana per la Ricerca Sul Cancro
  7. Fondazione Angela Bossolasco fellowship
  8. Associazione Italiana per la Ricerca sul Cancro Funding Source: Custom

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Axl, a prototypic member of the transmembrane tyrosine kinase receptor family, is known to regulate innate immunity. In this study, we show that Axl expression is induced by IFN-alpha during human dendritic cell (DC) differentiation from monocytes (IFN/DC) and that constitutively Axl-negative, IL-4-differentiated DC (IL-4/DC) can be induced to up-regulate Axl by IFN-alpha. This effect is inhibited by TLR-dependent maturation stimuli such as LPS, poly(I:C), TLR7/8 ligand, and CD40L. LPS-induced Axl down-regulation on the surface of human IFN-alpha-treated DC correlates with an increased proteolytic cleavage of Axl and with elevated levels of its soluble form. GM6001 and TAPI-1, general inhibitors of MMP and ADAM family proteases, restored Axl expression on the DC surface and diminished Axl shedding. Furthermore, stimulation of Axl by its ligand, Gas6, induced chemotaxis of human DC and rescued them from growth factor deprivation-induced apoptosis. Our study provides the first evidence that Gas6/Axl-mediated signaling regulates human DC activities, and identifies Gas6/Axl as a new DC chemotaxis pathway. This encourages one to explore whether dysregulation of this novel pathway in human DC biology is involved in autoimmunity characterized by high levels of IFN-alpha. The Journal of Immunology, 2009, 183: 3004-3013.

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