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Updated: Jul 31, 2025

Evaluation of Caspase Activation to Assess Innate Immune Cell Death
Published on: January 20, 2023
Oxidation of caspase-8 by hypothiocyanous acid enables TNF-mediated necroptosis
Stephanie M Bozonet1, Nicholas J Magon1, Abigail J Schwartfeger2
1Mātai Hāora - Centre for Redox Biology and Medicine, Department of Pathology and Biomedical Science, University of Otago, Christchurch, New Zealand.
Abstract:
Necroptosis is a form of regulated cell death triggered by various host and pathogen-derived molecules during infection and inflammation. The essential step leading to necroptosis is phosphorylation of the mixed lineage kinase domain-like protein by receptor-interacting protein kinase 3. Caspase-8 cleaves receptor-interacting protein kinases to block necroptosis, so synthetic caspase inhibitors are required to study this process in experimental models. However, it is unclear how caspase-8 activity is regulated in a physiological setting. The active site cysteine of caspases is sensitive to oxidative inactivation, so we hypothesized that oxidants generated at sites of inflammation can inhibit caspase-8 and promote necroptosis. Here, we discovered that hypothiocyanous acid (HOSCN), an oxidant generated in vivo by heme peroxidases including myeloperoxidase and lactoperoxidase, is a potent caspase-8 inhibitor. We found HOSCN was able to promote necroptosis in mouse fibroblasts treated with tumor necrosis factor. We also demonstrate purified caspase-8 was inactivated by low concentrations of HOSCN, with the predominant product being a disulfide-linked dimer between Cys360 and Cys409 of the large and small catalytic subunits. We show oxidation still occurred in the presence of reducing agents, and reduction of the dimer was slow, consistent with HOSCN being a powerful physiological caspase inhibitor. While the initial oxidation product is a dimer, further modification also occurred in cells treated with HOSCN, leading to higher molecular weight caspase-8 species. Taken together, these findings indicate major disruption of caspase-8 function and suggest a novel mechanism for the promotion of necroptosis at sites of inflammation.
Insights
Hypothiocyanous acid (HOSCN), an inflammation-generated oxidant, inhibits caspase-8, a key regulator of cell death. This inhibition promotes necroptosis, a form of regulated cell death, revealing a novel inflammatory pathway.
Area of Science:
- Cellular biology
- Immunology
- Biochemistry
Background:
- Necroptosis is a regulated cell death pathway implicated in infection and inflammation.
- Caspase-8 normally inhibits necroptosis, but its physiological regulation remains unclear.
- Oxidative stress is prevalent at inflammatory sites and can affect protein function.
Purpose of the Study:
- To investigate the role of oxidants in regulating caspase-8 activity.
- To determine if inflammation-generated oxidants can inhibit caspase-8 and promote necroptosis.
- To identify the specific oxidant and its mechanism of action on caspase-8.
Main Methods:
- Treatment of mouse fibroblasts with tumor necrosis factor (TNF) and hypothiocyanous acid (HOSCN).
- Biochemical assays to assess caspase-8 activity and identify oxidation products.
- Analysis of caspase-8 dimerization and higher molecular weight species formation.
Main Results:
- Hypothiocyanous acid (HOSCN), produced by heme peroxidases, potently inhibits caspase-8.
- HOSCN promotes necroptosis in TNF-treated mouse fibroblasts.
- HOSCN induces disulfide-linked dimerization of caspase-8, impairing its function.
Conclusions:
- Oxidants like HOSCN generated at inflammatory sites can inhibit caspase-8.
- Inhibition of caspase-8 by HOSCN is a novel mechanism promoting necroptosis.
- This finding provides new insights into the interplay between oxidative stress and regulated cell death.
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