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Updated: Sep 27, 2026

Evaluation of Caspase Activation to Assess Innate Immune Cell Death
Published on: January 20, 2023
The apoptosome pathway to caspase activation in primary human neutrophils exhibits dramatically reduced requirements
Brona M Murphy1, Amanda J O'Neill, Colin Adrain
1Molecular Cell Biology Laboratory, Department of Genetics, The Smurfit Institute, Trinity College, Dublin 2, Ireland.
Abstract:
Caspase activation is a central event in numerous forms of apoptosis and results in the proteolytic degradation of multiple substrate proteins that contribute to the apoptotic phenotype. An important route to caspase activation proceeds via assembly of the "apoptosome" as a result of the cell stress-associated release of mitochondrial cytochrome c. Previous studies have shown that primary neutrophils are largely incapable of mitochondrial respiration, suggesting that these cells either lack functional mitochondria or possess a defective respiratory chain. This prompted us to examine whether neutrophils retain an intact cytochrome c/apoptotic protease-activating factor 1 (Apaf-1) pathway to caspase activation and apoptosis. We show that primary human neutrophils contain barely detectable levels of cytochrome c as well as other mitochondrial proteins. Surprisingly, neutrophil cell-free extracts readily supported Apaf-1-dependent caspase activation, suggesting that these cells may assemble cytochrome c-independent apoptosomes. However, further analysis revealed that the trace amount of cytochrome c present in neutrophils is both necessary and sufficient for Apaf-1-dependent caspase activation in these cells. Thus, neutrophils have a lowered threshold requirement for cytochrome c in the Apaf-1-dependent cell death pathway. These observations suggest that neutrophils retain cytochrome c for the purpose of assembling functional apoptosomes rather than for oxidative phosphorylation.
Insights
Neutrophils, crucial immune cells, can activate apoptosis via the apoptosome pathway. Despite low cytochrome c levels, they retain this molecule for programmed cell death, not energy production.
Area of Science:
- Cell Biology
- Immunology
- Biochemistry
Background:
- Caspase activation drives apoptosis through protein degradation.
- Apoptosome formation, involving cytochrome c, is a key caspase activation route.
- Neutrophils are thought to have defective mitochondria, questioning their apoptotic capacity.
Purpose of the Study:
- Investigate the integrity of the cytochrome c/apoptotic protease-activating factor 1 (Apaf-1) pathway in neutrophils.
- Determine if neutrophils can activate caspases and undergo apoptosis despite limited mitochondrial function.
Main Methods:
- Assessed cytochrome c and mitochondrial protein levels in primary human neutrophils.
- Utilized cell-free neutrophil extracts to study Apaf-1-dependent caspase activation.
- Quantified the necessity and sufficiency of trace cytochrome c for apoptosis.
Main Results:
- Neutrophils exhibit extremely low levels of cytochrome c and other mitochondrial proteins.
- Neutrophil extracts support Apaf-1-dependent caspase activation, suggesting alternative pathways.
- Trace amounts of cytochrome c are essential and sufficient for neutrophil apoptosis via the apoptosome.
Conclusions:
- Neutrophils possess a functional, albeit highly sensitive, apoptosome pathway for programmed cell death.
- Cytochrome c in neutrophils is primarily utilized for apoptosis, not oxidative phosphorylation.
- This highlights a unique adaptation of the cell death machinery in immune cells.
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