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Updated: May 14, 2026

Lighting Up the Pathways to Caspase Activation Using Bimolecular Fluorescence Complementation
Published on: March 5, 2018
Caspase-8 binding to cardiolipin in giant unilamellar vesicles provides a functional docking platform for bid
Olivier Jalmar1, Liberty François-Moutal, Ana-Jesus García-Sáez
1Université Paris-Descartes, Centre de recherche des Saint-Pères, UMR S-747, Toxicology, Pharmacologie et Signalisation cellulaire, Paris, France.
Abstract:
Caspase-8 is involved in death receptor-mediated apoptosis in type II cells, the proapoptotic programme of which is triggered by truncated Bid. Indeed, caspase-8 and Bid are the known intermediates of this signalling pathway. Cardiolipin has been shown to provide an anchor and an essential activating platform for caspase-8 at the mitochondrial membrane surface. Destabilisation of this platform alters receptor-mediated apoptosis in diseases such as Barth Syndrome, which is characterised by the presence of immature cardiolipin which does not allow caspase-8 binding. We used a simplified in vitro system that mimics contact sites and/or cardiolipin-enriched microdomains at the outer mitochondrial surface in which the platform consisting of caspase-8, Bid and cardiolipin was reconstituted in giant unilamellar vesicles. We analysed these vesicles by flow cytometry and confirm previous results that demonstrate the requirement for intact mature cardiolipin for caspase-8 activation and Bid binding and cleavage. We also used confocal microscopy to visualise the rupture of the vesicles and their revesiculation at smaller sizes due to alteration of the curvature following caspase-8 and Bid binding. Biophysical approaches, including Laurdan fluorescence and rupture/tension measurements, were used to determine the ability of these three components (cardiolipin, caspase-8 and Bid) to fulfil the minimal requirements for the formation and function of the platform at the mitochondrial membrane. Our results shed light on the active functional role of cardiolipin, bridging the gap between death receptors and mitochondria.
Insights
Cardiolipin is essential for caspase-8 activation in apoptosis. This study reconstitutes the caspase-8 and cardiolipin platform in vitro, revealing cardiolipin
Area of Science:
- Cellular biology
- Biochemistry
- Mitochondrial function
Background:
- Caspase-8 and Bid are key mediators of apoptosis.
- Cardiolipin on the mitochondrial membrane acts as an activating platform for caspase-8.
- Barth Syndrome involves immature cardiolipin, impairing apoptosis.
Purpose of the Study:
- To investigate the role of cardiolipin in caspase-8 activation and Bid cleavage.
- To analyze the structural and functional requirements of the cardiolipin-caspase-8-Bid platform.
- To understand cardiolipin's role in bridging death receptors and mitochondria.
Main Methods:
- Reconstitution of the caspase-8, Bid, and cardiolipin platform in giant unilamellar vesicles (GUVs).
- Flow cytometry to assess caspase-8 activation and Bid cleavage.
- Confocal microscopy to visualize GUV rupture and revesiculation.
- Biophysical techniques (Laurdan fluorescence, tension measurements) to analyze platform formation and function.
Main Results:
- Mature cardiolipin is required for caspase-8 activation and Bid binding/cleavage.
- Caspase-8 and Bid binding alters GUV curvature, leading to rupture and revesiculation.
- The cardiolipin-caspase-8-Bid complex forms a functional platform at the mitochondrial membrane.
Conclusions:
- Cardiolipin plays an active role in initiating apoptosis by forming a platform for caspase-8 activation.
- This platform bridges the signaling from death receptors to mitochondria.
- Understanding this mechanism is crucial for diseases like Barth Syndrome.
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