Publication | Open Access
CLICs-dependent chloride efflux is an essential and proximal upstream event for NLRP3 inflammasome activation
343
Citations
46
References
2017
Year
Clics-dependent Chloride EffluxImmunologyMolecular BiologyCell DeathInnate ImmunityCellular PhysiologyOxidative StressInflammationPotassium EffluxSignaling PathwayNlrp3 InflammasomeInflammasomeAutoinflammatory DiseaseCell SignalingMolecular SignalingMolecular PhysiologyMitochondrial DynamicIon ChannelsProximal Upstream EventImmune FunctionCell BiologySignal TransductionMitochondrial FunctionNatural SciencesNlrp3 Inflammasome ActivationCellular BiochemistryMedicine
The NLRP3 inflammasome can sense different pathogens or danger signals, and has been reported to be involved in the development of many human diseases. Potassium efflux and mitochondrial damage are both reported to mediate NLRP3 inflammasome activation, but the underlying, orchestrating signaling events are still unclear. Here we show that chloride intracellular channels (CLIC) act downstream of the potassium efflux-mitochondrial reactive oxygen species (ROS) axis to promote NLRP3 inflammasome activation. NLRP3 agonists induce potassium efflux, which causes mitochondrial damage and ROS production. Mitochondrial ROS then induces the translocation of CLICs to the plasma membrane for the induction of chloride efflux to promote NEK7-NLRP3 interaction, inflammasome assembly, caspase-1 activation, and IL-1β secretion. Thus, our results identify CLICs-dependent chloride efflux as an essential and proximal upstream event for NLRP3 activation.The NLRP3 inflammasome is key to the regulation of innate immunity against pathogens or stress, but the underlying signaling regulation is still unclear. Here the authors show that chloride intracellular channels (CLIC) interface between mitochondria stress and inflammasome activation to modulate inflammatory responses.
| Year | Citations | |
|---|---|---|
Page 1
Page 1