Fas (CD95) induces rapid, TLR4/IRAK4-dependent release of pro-inflammatory HMGB1 from macrophages

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作者
Feng Wang
Ziyue Lu
Michael Hawkes
Huan Yang
Kevin C Kain
W Conrad Liles
机构
[1] University Health Network,Department of Medicine, Toronto General Research Institute, McLaughlin
[2] University of Toronto,Rotman Centre for Global Health, McLaughlin Centre for Molecular Medicine
[3] the Feinstein Institute for Medical Research,Laboratory of Biomedical Science
来源
Journal of Inflammation | / 7卷
关键词
Proinflammatory Cytokine Production; Translational Research Program; Medical Scientist Training Program; Apoptotic Programme Cell Death; Primary Murine Peritoneal Macrophage;
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摘要
Although Fas (CD95) is recognized as a death receptor that induces apoptosis, recent studies indicate that the Fas/FasL system can induce pro-inflammatory cytokine production by macrophages independent of conventional caspase-mediated apoptotic signaling. The precise mechanism(s) by which Fas activates macrophage inflammation is unknown. We hypothesized that Fas stimulates rapid release of high mobility group box 1 (HMGB1) that acts in an autocrine and/or paracrine manner to stimulate pro-inflammatory cytokine production via a Toll-like receptor-4 (TLR4)/Interleukin-1 receptor associated kinase-4 (IRAK4)-dependent mechanism. Following Fas activation, HMGB1 was released within 1 hr from viable RAW267.4 cells and primary murine peritoneal macrophages. HMGB1 release was more rapid following Fas activation compared to LPS stimulation. Neutralization of HMGB1 with an inhibitory anti-HMGB1 monoclonal antibody strongly inhibited Fas-induced production of tumor necrosis factor (TNF) and macrophage inflammatory protein-2 (MIP-2). Both Fas-induced HMGB1 release and associated pro-inflammatory cytokine production were significantly decreased from Tlr4-/-and Irak4-/-macrophages, but not Tlr2-/-macrophages. These findings reveal a novel mechanism underlying Fas-mediated pro-inflammatory physiological responses in macrophages. We conclude that Fas activation induces rapid, TLR4/IRAK4-dependent release of HMGB1 that contributes to Fas-mediated pro-inflammatory cytokine production by viable macrophages.
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