Monosodium Urate Crystals Generate Nuclease-Resistant Neutrophil Extracellular Traps via a Distinct Molecular Pathway.
Simon M ChatfieldKathrin GrebeLachlan W WhiteheadKelly L RogersThomas NeblJames M MurphyIan P WicksPublished in: Journal of immunology (Baltimore, Md. : 1950) (2018)
Neutrophil extracellular traps (NETs) and the cell death associated with it (NETosis) have been implicated in numerous diseases. Mechanistic studies of NETosis have typically relied on nonphysiological stimuli, such as PMA. The human disease of gout is caused by monosodium urate (MSU) crystals. We observed that DNA consistent with NETs is present in fluid from acutely inflamed joints of gout patients. NETs also coat the crystals found in uninflamed tophi of chronic gout patients. We developed a quantitative, live cell imaging assay, which measures the key features of NETosis, namely, cell death and chromatin decondensation. We show that MSU and other physiologically relevant crystals induce NETosis through a molecular pathway that is distinct from PMA and Candida hyphae. Crystals interact with lysosomes to induce NADPH oxidase-independent cell death, with postmortem chromatin decondensation mediated by neutrophil elastase. The resulting MSU-induced NETs are enriched for actin and are resistant to serum and DNase degradation. These findings demonstrate a distinct physiological NETosis pathway in response to MSU crystals, which coats MSU crystals in DNA that persists in tissues as gouty tophi.
Keyphrases
- cell death
- room temperature
- end stage renal disease
- ejection fraction
- gene expression
- newly diagnosed
- chronic kidney disease
- single molecule
- uric acid
- high resolution
- transcription factor
- dna damage
- circulating tumor
- dna methylation
- peritoneal dialysis
- cell free
- patient reported outcomes
- escherichia coli
- cell cycle arrest
- staphylococcus aureus
- drug induced
- metabolic syndrome
- cell proliferation
- candida albicans
- photodynamic therapy
- diabetic rats
- pi k akt
- case control
- biofilm formation