Journal of Immunology 2009-09-15

A critical role for hemolysins and bacterial lipoproteins in Staphylococcus aureus-induced activation of the Nlrp3 inflammasome.

Raúl Muñoz-Planillo, Luigi Franchi, Lloyd S Miller, Gabriel Núñez

Index: J. Histochem. Cytochem. 183 , 3942-8, (2009)

Full Text: HTML

Abstract

The mechanism by which bacterial pathogens activate caspase-1 via Nlrp3 remains poorly understood. In this study, we show that the ability of Staphylococcus aureus, a leading cause of infection in humans, to activate caspase-1 and induce IL-1beta secretion resides in culture supernatants of growing bacteria. Caspase-1 activation induced by S. aureus required alpha-, beta-, and gamma-hemolysins and the host Nlrp3 inflammasome. Mechanistically, alpha- and beta-hemolysins alone did not trigger caspase-1 activation, but they did so in the presence of bacterial lipoproteins released by S. aureus. Notably, caspase-1 activation induced by S. aureus supernatant was independent of the P2X7 receptor and the essential TLR adaptors MyD88 and TIR domain-containing adapter-inducing IFN-beta, but was inhibited by extracellular K(+). These results indicate that S. aureus hemolysins circumvent the requirement of ATP and the P2X7 receptor to induce caspase-1 activation via Nlrp3. Furthermore, these studies revealed that hemolysins promote in the presence of lipoproteins the activation of the Nlrp3 inflammasome.


Related Compounds

Related Articles:

Staphylococcal alpha toxin--recent advances.

1988-01-01

[Toxicon 26 , 55-65, (1988)]

Adaptation to benzalkonium chloride and ciprofloxacin affects biofilm formation potential, efflux pump and haemolysin activity of Escherichia coli of dairy origin.

2012-11-01

[J. Dairy Res. 79(4) , 383-9, (2012)]

Annular protofibrils are a structurally and functionally distinct type of amyloid oligomer.

2009-02-13

[J. Bacteriol. 284 , 4230-7, (2009)]

Differential dissociation of G protein heterotrimers.

2008-07-15

[J. Phys. Chem. 586 , 3325-35, (2008)]

Staphylococcus aureus alpha-toxin activates phospholipases and induces a Ca2+ influx in PC12 cells.

1989-01-01

[Cell. Signal. 1 , 387-393, (1989)]

More Articles...