WAVE1 mediates suppression of phagocytosis by phospholipid-derived DAMPs
WAVE1 mediates suppression of phagocytosis by phospholipid-derived DAMPs
Clearance of invading pathogens is essential to preventing overwhelming inflammation and sepsis that are symptomatic of bacterial peritonitis. Macrophages participate in this innate immune response by engulfing and digesting pathogens, a process called phagocytosis. Oxidized phospholipids (OxPL) are danger-associated molecular patterns (DAMPs) generated in response to infection that can prevent the phagocytic clearance of bacteria. We investigated the mechanism underlying OxPL action in macrophages. Exposure to OxPL induced alterations in actin polymerization, resulting in spreading of peritoneal macrophages and diminished uptake of E. coli. Pharmacological and cell-based studies showed that an anchored pool of PKA mediates the effects of OxPL. Gene silencing approaches identified the A-kinase anchoring protein (AKAP) WAVE1 as an effector of OxPL action in vitro. Chimeric Wave1(-/-) mice survived significantly longer after infection with E. coli and OxPL treatment in vivo. Moreover, we found that endogenously generated OxPL in human peritoneal dialysis fluid from end-stage renal failure patients inhibited phagocytosis via WAVE1. Collectively, these data uncover an unanticipated role for WAVE1 as a critical modulator of the innate immune response to severe bacterial infections.
- Austrian Academy of Sciences Austria
- University of Mary United States
- Paracelsus Medical University Austria
- University of Washington United States
- Medical University of Vienna Austria
Male, Mice, Knockout, Peritonitis, Cyclic AMP-Dependent Protein Kinases, Immunity, Innate, Cell Line, Enzyme Activation, Mice, Inbred C57BL, Mice, Phagocytosis, Escherichia coli, Macrophages, Peritoneal, Phosphatidylcholines, Animals, Humans, Kidney Failure, Chronic, Dimyristoylphosphatidylcholine, Oxidation-Reduction, Peritoneal Dialysis, Escherichia coli Infections
Male, Mice, Knockout, Peritonitis, Cyclic AMP-Dependent Protein Kinases, Immunity, Innate, Cell Line, Enzyme Activation, Mice, Inbred C57BL, Mice, Phagocytosis, Escherichia coli, Macrophages, Peritoneal, Phosphatidylcholines, Animals, Humans, Kidney Failure, Chronic, Dimyristoylphosphatidylcholine, Oxidation-Reduction, Peritoneal Dialysis, Escherichia coli Infections
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