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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
TNF/TNFR axis promotes pyrin inflammasome activation and distinctly modulates pyrin inflammasomopathy
Deepika Sharma1, Ankit Malik1, Clifford Guy1
1Department of Immunology and.
Abstract:
Pyrin is an inflammasome sensor that promotes caspase-1-mediated pyroptotic cell death and maturation of proinflammatory cytokines IL-1β and IL-18. Familial Mediterranean fever (FMF), an autoinflammatory disorder, is associated with mutations in the gene encoding pyrin (MEFV). FMF-knockin (FMF-KI) mice that express chimeric pyrin protein with FMF mutation (MefvV726A/V726A) exhibit an autoinflammatory disorder mediated by autoactivation of the pyrin inflammasome. Increase in the levels of TNF are observed in FMF-KI mice, and many features of FMF overlap with the autoinflammatory disorder associated with TNF receptor signaling. In this study, we assessed the contribution of TNF signaling to pyrin inflammasome activation and its consequent role in distinct FMF pathologies. TNF signaling promoted the expression of pyrin in response to multiple stimuli and was required for inflammasome activation in response to canonical pyrin stimuli and in myeloid cells from FMF-KI mice. TNF signaling promoted systemic wasting, anemia, and neutrophilia in the FMF-KI mice. Further, TNF-induced pathology was induced specifically through the TNFR1 receptor, while TNFR2-mediated signaling was distinctly protective in colitis and ankle joint inflammation. Overall, our data show that TNF is a critical modulator of pyrin expression, inflammasome activation, and pyrin-inflammasomopathy. Further, specific blockade of TNFR1 or activation of TNFR2 could provide substantial protection against FMF pathologies.
Insights
Tumor necrosis factor (TNF) signaling drives pyrin inflammasome activation and Familial Mediterranean fever (FMF) pathologies in mice. Blocking TNF receptor 1 (TNFR1) or activating TNF receptor 2 (TNFR2) may offer protection against FMF.
Area of Science:
- Immunology
- Inflammasome Biology
- Autoinflammatory Diseases
Background:
- Pyrin inflammasome activation is central to pyroptosis and cytokine release.
- Familial Mediterranean fever (FMF) involves mutations in the pyrin gene (MEFV).
- FMF models show increased TNF levels and overlapping pathologies with TNF receptor signaling.
Purpose of the Study:
- To investigate TNF signaling's role in pyrin inflammasome activation.
- To determine TNF's contribution to FMF-associated pathologies.
- To explore therapeutic strategies targeting TNF receptors in FMF.
Main Methods:
- Utilized FMF-knockin (FMF-KI) mouse models with MefvV726A/V726A mutation.
- Assessed pyrin expression and inflammasome activation under TNF signaling.
- Analyzed FMF pathologies including systemic wasting, anemia, neutrophilia, colitis, and joint inflammation.
- Differentiated roles of TNFR1 and TNFR2 in mediating TNF effects.
Main Results:
- TNF signaling enhances pyrin expression and is crucial for inflammasome activation in FMF-KI mice.
- TNF signaling exacerbates systemic wasting, anemia, and neutrophilia in FMF-KI mice.
- TNFR1 activation mediates FMF pathology, while TNFR2 activation shows protective effects in colitis and joint inflammation.
Conclusions:
- TNF is a key regulator of pyrin expression, inflammasome activation, and pyrin-inflammasomopathies.
- Targeting TNFR1 blockade or TNFR2 activation presents a potential therapeutic avenue for FMF.
- Understanding TNF-pyrin axis interplay is vital for FMF treatment strategies.
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