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Published on: March 5, 2018
Activation of NF-kappaB by FADD, Casper, and caspase-8
1Department of Immunology, National Jewish Medical and Research Center, University of Colorado Health Sciences Center, Denver, Colorado 80206, USA.
Abstract:
Fas-associated death domain protein (FADD), caspase-8-related protein (Casper), and caspase-8 are components of the tumor necrosis factor receptor type 1 (TNF-R1) and Fas signaling complexes that are involved in TNF-R1- and Fas-induced apoptosis. Here we show that overexpression of FADD and Casper potently activates NF-kappaB. In the presence of caspase inhibitors, overexpression of caspase-8 also activates NF-kappaB. A caspase-inactive point mutant, caspase-8(C360S), activates NF-kappaB as potently as wild-type caspase-8, suggesting that caspase-8-induced apoptosis and NF-kappaB activation are uncoupled. NF-kappaB activation by FADD and Casper is inhibited by the caspase-specific inhibitors crmA and BD-fmk, suggesting that FADD- and Casper-induced NF-kappaB activation is mediated by caspase-8. FADD, Casper, and caspase-8-induced NF-kappaB activation are inhibited by dominant negative mutants of TRAF2, NIK, IkappaB kinase alpha, and IkappaB kinase beta. A dominant negative mutant of RIP inhibits FADD- and caspase-8-induced but not Casper-induced NF-kappaB activation. A mutant of Casper and the caspase-specific inhibitors crmA and BD-fmk partially inhibit TNF-R1-, TRADD, and TNF-induced NF-kappaB activation, suggesting that FADD, Casper, and caspase-8 function downstream of TRADD and contribute to TNF-R1-induced NF-kappaB activation. Moreover, activation of caspase-8 results in proteolytic processing of NIK, which is inhibited by crmA. When overexpressed, the processed fragments of NIK do not activate NF-kappaB, and the processed C-terminal fragment inhibits TNF-R1-induced NF-kappaB activation. These data indicate that FADD, Casper, and pro-caspase-8 are parts of the TNF-R1-induced NF-kappaB activation pathways, whereas activated caspase-8 can negatively regulate TNF-R1-induced NF-kappaB activation by proteolytically inactivating NIK.
Insights
Fas-associated death domain protein (FADD) and Casper activate NF-kappaB, a process involving caspase-8. Activated caspase-8 can also inhibit NF-kappaB by degrading NIK, revealing a dual role in TNF-R1 signaling.
Area of Science:
- Cellular signaling pathways
- Immunology
- Molecular biology
Background:
- Fas-associated death domain protein (FADD), Casper, and caspase-8 are key players in TNF-R1 and Fas signaling, mediating apoptosis.
- The precise mechanisms by which these proteins influence NF-kappaB activation remain incompletely understood.
Purpose of the Study:
- To investigate the role of FADD, Casper, and caspase-8 in NF-kappaB activation.
- To elucidate the relationship between caspase-8 activity, apoptosis, and NF-kappaB signaling.
- To determine the position of FADD, Casper, and caspase-8 within the TNF-R1 signaling cascade.
Main Methods:
- Overexpression of FADD, Casper, and caspase-8 (wild-type and mutant) in cellular systems.
- Use of caspase inhibitors (crmA, BD-fmk) and dominant-negative mutants (TRAF2, NIK, IKKs, RIP).
- Analysis of NF-kappaB activation and NIK proteolytic processing.
Main Results:
- FADD and Casper overexpression potently activate NF-kappaB, dependent on caspase-8 activity.
- Caspase-8 activation of NF-kappaB is uncoupled from its apoptotic function.
- Activated caspase-8 proteolytically inactivates NIK, inhibiting TNF-R1-induced NF-kappaB activation.
Conclusions:
- FADD, Casper, and pro-caspase-8 are integral components of TNF-R1-induced NF-kappaB activation pathways.
- Activated caspase-8 acts as a negative regulator of TNF-R1 signaling by degrading NIK.
- These findings reveal a complex interplay between apoptosis and NF-kappaB signaling mediated by FADD, Casper, and caspase-8.
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