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Activation and Measurement of NLRP3 Inflammasome Activity Using IL-1β in Human Monocyte-derived Dendritic Cells
Published on: May 22, 2014
Active MLKL triggers the NLRP3 inflammasome in a cell-intrinsic manner
Stephanie A Conos1,2, Kaiwen W Chen3, Dominic De Nardo2,4
1Cell Signalling and Cell Death Division, The Walter and Eliza Hall Institute of Medical Research, Parkville, VIC 3052, Australia.
Abstract:
Necroptosis is a physiological cell suicide mechanism initiated by receptor-interacting protein kinase-3 (RIPK3) phosphorylation of mixed-lineage kinase domain-like protein (MLKL), which results in disruption of the plasma membrane. Necroptotic cell lysis, and resultant release of proinflammatory mediators, is thought to cause inflammation in necroptotic disease models. However, we previously showed that MLKL signaling can also promote inflammation by activating the nucleotide-binding oligomerization domain (NOD)-like receptor protein 3 (NLRP3) inflammasome to recruit the adaptor protein apoptosis-associated speck-like protein containing a caspase activation and recruitment domain (ASC) and trigger caspase-1 processing of the proinflammatory cytokine IL-1β. Here, we provide evidence that MLKL-induced activation of NLRP3 requires (i) the death effector four-helical bundle of MLKL, (ii) oligomerization and association of MLKL with cellular membranes, and (iii) a reduction in intracellular potassium concentration. Although genetic or pharmacological targeting of NLRP3 or caspase-1 prevented MLKL-induced IL-1β secretion, they did not prevent necroptotic cell death. Gasdermin D (GSDMD), the pore-forming caspase-1 substrate required for efficient NLRP3-triggered pyroptosis and IL-1β release, was not essential for MLKL-dependent death or IL-1β secretion. Imaging of MLKL-dependent ASC speck formation demonstrated that necroptotic stimuli activate NLRP3 cell-intrinsically, indicating that MLKL-induced NLRP3 inflammasome formation and IL-1β cleavage occur before cell lysis. Furthermore, we show that necroptotic activation of NLRP3, but not necroptotic cell death alone, is necessary for the activation of NF-κB in healthy bystander cells. Collectively, these results demonstrate the potential importance of NLRP3 inflammasome activity as a driving force for inflammation in MLKL-dependent diseases.
Insights
Necroptosis triggers inflammation via RIPK3-MLKL signaling, activating the NLRP3 inflammasome independently of cell lysis. This pathway drives inflammation in MLKL-dependent diseases.
Area of Science:
- Immunology
- Cell Biology
- Molecular Medicine
Background:
- Necroptosis, a programmed cell death, involves RIPK3-MLKL signaling and plasma membrane disruption.
- Necroptotic cell lysis releases mediators, contributing to inflammation in disease models.
- MLKL signaling can independently activate the NLRP3 inflammasome, promoting IL-1β secretion.
Purpose of the Study:
- To elucidate the mechanisms of MLKL-induced NLRP3 inflammasome activation.
- To investigate the role of NLRP3 inflammasome activity in MLKL-dependent inflammation.
- To determine if NLRP3 activation precedes or follows necroptotic cell lysis.
Main Methods:
- Utilized genetic and pharmacological approaches to target NLRP3 and caspase-1.
- Performed imaging of MLKL-dependent ASC speck formation.
- Assessed the necessity of Gasdermin D (GSDMD) in MLKL-dependent processes.
- Investigated NF-κB activation in bystander cells.
Main Results:
- MLKL-induced NLRP3 activation requires MLKL's death effector domain, oligomerization, membrane association, and reduced intracellular potassium.
- Targeting NLRP3 or caspase-1 inhibited IL-1β secretion but not necroptotic cell death.
- GSDMD was not essential for MLKL-dependent death or IL-1β secretion.
- NLRP3 inflammasome activation occurred cell-intrinsically before cell lysis.
- NLRP3 activation, not cell death alone, was necessary for NF-κB activation in bystander cells.
Conclusions:
- MLKL-induced NLRP3 inflammasome activation is a key driver of inflammation in necroptotic diseases.
- NLRP3 activation precedes and is separable from necroptotic cell lysis.
- Targeting NLRP3 may offer therapeutic strategies for MLKL-dependent inflammatory conditions.
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