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Updated: Feb 15, 2026

Evaluation of Caspase Activation to Assess Innate Immune Cell Death
Published on: January 20, 2023
Biochemical Analysis of Initiator Caspase-Activating Complexes: The Apoptosome and the Death-Inducing Signaling
Claudia Langlais1, Michelle A Hughes1, Kelvin Cain1
1MRC Toxicology Unit, Hodgkin Building, Leicester LE1 9HN, United Kingdom.
Abstract:
Apoptosis is a highly regulated process that can be initiated by activation of death receptors or perturbation of mitochondria causing the release of apoptogenic proteins. This results in the activation of caspases, which are responsible for many of the biochemical and morphological changes associated with apoptosis. Caspases are normally inactive and require activation in a cascade emanating from an "initiator" or activating caspase, which in turn activates a downstream or "effector" caspase. Activation of initiator caspases is tightly regulated and requires the assembly of caspase-9 (via mitochondrial perturbation) or caspase-8/10 (via death receptor ligation) activating complexes, which are termed the apoptosome and the death-inducing signaling complex (DISC), respectively. These large multiprotein complexes can initially be separated according to size by gel filtration chromatography and subsequently analyzed by affinity purification or immunoprecipitation. The advantage of combining these techniques is one can first assess the assembly of individual components into a multiprotein complex, and then assess the size and composition of the native functional signaling platform within a particular cell type alongside a biochemical analysis of the enriched/purified complex. Here, we describe various methods currently used for characterization of the apoptosome and DISC.
Insights
Apoptosis involves caspase activation through specific protein complexes. This study details methods to analyze the apoptosome and death-inducing signaling complex (DISC), crucial for understanding cell death regulation.
Area of Science:
- Cellular Biology
- Biochemistry
Background:
- Apoptosis is a regulated cell death process.
- Caspase activation initiates apoptosis via initiator and effector caspases.
- Initiator caspase activation requires specific protein complexes: apoptosome and DISC.
Purpose of the Study:
- To describe methods for characterizing the apoptosome and DISC.
- To enable analysis of native functional signaling platforms.
Main Methods:
- Gel filtration chromatography to separate protein complexes by size.
- Affinity purification and immunoprecipitation for component analysis.
- Combined techniques to assess assembly, size, and composition.
Main Results:
- Methods allow assessment of individual component assembly into complexes.
- Techniques enable analysis of native functional signaling platforms.
- Biochemical analysis of enriched/purified complexes is feasible.
Conclusions:
- Characterization of apoptosome and DISC is essential for understanding apoptosis.
- Combined chromatographic and purification methods provide comprehensive analysis.
- These methods facilitate biochemical analysis of signaling platforms.
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