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Updated: Aug 9, 2026

Lighting Up the Pathways to Caspase Activation Using Bimolecular Fluorescence Complementation
Published on: March 5, 2018
Caspase-7 is directly activated by the approximately 700-kDa apoptosome complex and is released as a stable
Davina Twiddy1, Gerald M Cohen, Marion Macfarlane
1Medical Research Council Toxicology Unit, Hodgkin Building, University of Leicester, UK.
Abstract:
MCF-7 cells lack caspase-3 but undergo mitochondrial-dependent apoptosis via caspase-7 activation. It is assumed that the Apaf-1-caspase-9 apoptosome processes caspase-7 in an analogous manner to that described for caspase-3. However, this has not been validated experimentally, and we have now characterized the caspase-7 activating apoptosome complex in MCF-7 cell lysates activated with dATP/cytochrome c. Apaf-1 oligomerizes to produce approximately 1.4-MDa and approximately 700-kDa apoptosome complexes, and the latter complex directly cleaves/activates procaspase-7. This approximately 700-kDa apoptosome complex, which is also formed in apoptotic MCF-7 cells, is assembled by rapid oligomerization of Apaf-1 and followed by a slower process of procaspase-9 recruitment and cleavage to form the p35/34 forms. However, procaspase-9 recruitment and processing are accelerated in lysates supplemented with caspase-3. In lysates containing very low levels of Smac and Omi/HtrA2, XIAP (X-linked inhibitor of apoptosis) binds tightly to caspase-9 in the apoptosome complex, and as a result caspase-7 processing is abrogated. In contrast, in MCF-7 lysates containing Smac and Omi/HtrA2, active caspase-7 is released from the apoptosome and forms a stable approximately 200-kDa XIAP-caspase-7 complex, which apparently does not contain cIAP1 or cIAP2. Thus, in comparison to caspase-3-containing cells, XIAP appears to have a more significant antiapoptotic role in MCF-7 cells because it directly inhibits caspase-7 activation by the apoptosome and also forms a stable approximately 200-kDa complex with active caspase-7.
Insights
MCF-7 cells activate caspase-7 through a specific apoptosome complex, revealing XIAP
Area of Science:
- Cell Biology
- Molecular Biology
- Apoptosis Signaling
Background:
- MCF-7 cells initiate apoptosis via caspase-7, lacking caspase-3.
- The apoptosome's role in caspase-7 activation, analogous to caspase-3, requires experimental validation.
Purpose of the Study:
- Characterize the caspase-7 activating apoptosome complex in MCF-7 cells.
- Investigate the role of XIAP in regulating caspase-7 activation and apoptosis in MCF-7 cells.
Main Methods:
- Utilized MCF-7 cell lysates activated with dATP/cytochrome c.
- Analyzed apoptosome complex formation and protein interactions using biochemical assays.
Main Results:
- Identified a ~700-kDa apoptosome complex responsible for direct procaspase-7 cleavage and activation.
- Demonstrated that XIAP binding to the apoptosome abrogates caspase-7 activation, particularly in low Smac/Omi/HtrA2 conditions.
- Observed formation of a stable ~200-kDa XIAP-caspase-7 complex in the presence of Smac/Omi/HtrA2.
Conclusions:
- The ~700-kDa apoptosome complex is crucial for caspase-7 activation in MCF-7 cells.
- XIAP plays a significant antiapoptotic role by directly inhibiting apoptosome-mediated caspase-7 activation and sequestering active caspase-7.
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