The role of potassium in inflammasome activation by bacteria.


Autoria(s): Arlehamn C.S.; Pétrilli V.; Gross O.; Tschopp J.; Evans T.J.
Data(s)

2010

Resumo

Many Gram-negative bacteria possess a type III secretion system (TTSS( paragraph sign)) that can activate the NLRC4 inflammasome, process caspase-1 and lead to secretion of mature IL-1beta. This is dependent on the presence of intracellular flagellin. Previous reports have suggested that this activation is independent of extracellular K(+) and not accompanied by leakage of K(+) from the cell, in contrast to activation of the NLRP3 inflammasome. However, non-flagellated strains of Pseudomonas aeruginosa are able to activate NLRC4, suggesting that formation of a pore in the cell membrane by the TTSS apparatus may be sufficient for inflammasome activation. Thus, we set out to determine if extracellular K(+) influenced P. aeruginosa inflammasome activation. We found that raising extracellular K(+) prevented TTSS NLRC4 activation by the non-flagellated P. aeruginosa strain PA103DeltaUDeltaT at concentrations above 90 mm, higher than those reported to inhibit NLRP3 activation. Infection was accompanied by efflux of K(+) from a minority of cells as determined using the K(+)-sensitive fluorophore PBFI, but no formation of a leaky pore. We obtained exactly the same results following infection with Salmonella typhimurium, previously described as independent of extracellular K(+). The inhibitory effect of raised extracellular K(+) on NLRC4 activation thus reflects a requirement for a decrease in intracellular K(+) for this inflammasome component as well as that described for NLRP3.

Identificador

http://serval.unil.ch/?id=serval:BIB_5A09434E0D93

isbn:1083-351X[electronic], 0021-9258[linking]

pmid:20097760

doi:10.1074/jbc.M109.067298

isiid:000276264600037

Idioma(s)

en

Fonte

Journal of Biological Chemistry, vol. 285, no. 14, pp. 10508-10518

Palavras-Chave #Animals; Bacterial Proteins/metabolism; Caspase 1/metabolism; Immunoblotting; Inflammation/immunology; Inflammation/metabolism; Interleukin-1beta/metabolism; Mice; Mice, Inbred C57BL; Potassium/metabolism; Pseudomonas Infections/immunology; Pseudomonas Infections/metabolism; Pseudomonas aeruginosa/pathogenicity; Salmonella Infections/immunology; Salmonella Infections/metabolism; Salmonella typhimurium/pathogenicity
Tipo

info:eu-repo/semantics/article

article