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Updated: Dec 7, 2025

Evaluation of Caspase Activation to Assess Innate Immune Cell Death
Published on: January 20, 2023
Integration of innate immune signalling by caspase-8 cleavage of N4BP1
Alexander D Gitlin1,2, Klaus Heger3, Alexander F Schubert4
1Department of Pathology, Stanford University School of Medicine, Stanford, CA, USA. adgitlin@stanford.edu.
Abstract:
Mutations in the death receptor FAS1,2 or its ligand FASL3 cause autoimmune lymphoproliferative syndrome, whereas mutations in caspase-8 or its adaptor FADD-which mediate cell death downstream of FAS and FASL-cause severe immunodeficiency in addition to autoimmune lymphoproliferative syndrome4-6. Mouse models have corroborated a role for FADD-caspase-8 in promoting inflammatory responses7-12, but the mechanisms that underlie immunodeficiency remain undefined. Here we identify NEDD4-binding protein 1 (N4BP1) as a suppressor of cytokine production that is cleaved and inactivated by caspase-8. N4BP1 deletion in mice increased the production of select cytokines upon stimulation of the Toll-like receptor (TLR)1-TLR2 heterodimer (referred to herein as TLR1/2), TLR7 or TLR9, but not upon engagement of TLR3 or TLR4. N4BP1 did not suppress TLR3 or TLR4 responses in wild-type macrophages, owing to TRIF- and caspase-8-dependent cleavage of N4BP1. Notably, the impaired production of cytokines in response to TLR3 and TLR4 stimulation of caspase-8-deficient macrophages13 was largely rescued by co-deletion of N4BP1. Thus, the persistence of intact N4BP1 in caspase-8-deficient macrophages impairs their ability to mount robust cytokine responses. Tumour necrosis factor (TNF), like TLR3 or TLR4 agonists, also induced caspase-8-dependent cleavage of N4BP1, thereby licensing TRIF-independent TLRs to produce higher levels of inflammatory cytokines. Collectively, our results identify N4BP1 as a potent suppressor of cytokine responses; reveal N4BP1 cleavage by caspase-8 as a point of signal integration during inflammation; and offer an explanation for immunodeficiency caused by mutations of FADD and caspase-8.
Insights
NEDD4-binding protein 1 (N4BP1) suppresses cytokine production and is inactivated by caspase-8. Its cleavage by caspase-8 integrates inflammatory signals, explaining immunodeficiency linked to caspase-8 mutations.
Area of Science:
- Immunology
- Molecular Biology
- Cell Signaling
Background:
- Mutations in FAS, FASL, caspase-8, or FADD are linked to autoimmune lymphoproliferative syndrome and severe immunodeficiency.
- The precise mechanisms underlying immunodeficiency associated with FADD-caspase-8 pathway defects remain unclear.
- Caspase-8 plays a critical role in immune responses and cell death pathways.
Purpose of the Study:
- To identify novel regulators of cytokine production involved in immune responses.
- To elucidate the role of NEDD4-binding protein 1 (N4BP1) in regulating inflammatory signaling.
- To understand how caspase-8 activity influences N4BP1 function and cytokine production.
Main Methods:
- Utilized mouse models with targeted gene deletions (N4BP1, caspase-8).
- Stimulated Toll-like receptors (TLRs) 1/2, 3, 4, 7, and 9 in macrophages.
- Assessed cytokine production and N4BP1 cleavage in response to various stimuli and genetic modifications.
Main Results:
- Identified N4BP1 as a suppressor of cytokine production, inactivated by caspase-8 cleavage.
- N4BP1 deletion enhanced cytokine production via TLR1/2, TLR7, and TLR9, but not TLR3 or TLR4.
- Caspase-8-dependent N4BP1 cleavage was required for robust cytokine responses to TLR3 and TLR4 stimulation, and TNF signaling.
Conclusions:
- N4BP1 acts as a potent suppressor of cytokine responses.
- Caspase-8-mediated cleavage of N4BP1 serves as a crucial integration point for inflammatory signaling.
- This mechanism explains the immunodeficiency observed in individuals with FADD and caspase-8 mutations.
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