4.6 Article

The P2X7 Receptor and Pannexin-1 Are Both Required for the Promotion of Multinucleated Macrophages by the Inflammatory Cytokine GM-CSF

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JOURNAL OF IMMUNOLOGY
卷 187, 期 7, 页码 3878-3887

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AMER ASSOC IMMUNOLOGISTS
DOI: 10.4049/jimmunol.1002780

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  1. Natural Sciences and Engineering Research Council of Canada
  2. Canadian Institute of Health Research
  3. Italian Association for Cancer Research [IG 5354]
  4. Telethon of Italy [GGP06070]
  5. Italian Space Agency
  6. Commission of European Communities [HEALTH-F2-2007-202231]
  7. Regione Emilia Romagna (research programs Innovative approaches to the diagnosis of inflammatory diseases and Moniter)
  8. University of Ferrara

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The P2X(7) receptor (P2X(7)R), an ATP-gated ion channel, has been implicated in the process of cell-to-cell fusion into multinucleated macrophages (MA), but its contribution to MA fusion driven by physiological/pathological stimuli is not clearly established. Based on several lines of evidence, we demonstrate that P2X(7)R is critical for the induction of multinucleated MA by the inflammatory cytokine GM-CSF: 1) pharmacological inhibition of P2X(7)R with oxidized ATP (oATP), KN-62, and the selective antagonist A740003 abrogated GM-CSF action on rat alveolar MA and murine peritoneal MA; 2) a murine J774 P2X(7) low MA clone, selected for defective P2X(7)R function, was unresponsive; 3) MA from mice lacking P2X(7)R failed to respond to GM-CSF, in contrast to wild-type. GM-CSF also stimulated ATP-induced membrane permeabilization in J774 P2X(7) high MA and rat alveolar MA, an effect absent in the P2X(7) low MA clone and inhibited by the P2X(7) blockers oATP and KN-62. Notably, the stimulatory effects of GM-CSF on pore formation and MA fusion were both inhibited by blocking functional Pannexin-1 (Panx-1), and GM-CSF failed to stimulate MA fusion in cells from Panx-1 knockout mice. We provide further evidence that extracellular ATP release from peritoneal MA is dependent on P2X(7) but not on Panx-1 expression and that its metabolism to adenosine mediates P2X(7)-dependent MA fusion. These data demonstrate that both P2X(7) and Panx-1 are required for GM-CSF promotion of MA fusion but likely act independently through different signaling pathway(s). The Journal of Immunology, 2011, 187: 3878-3887.

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