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Updated: Jan 4, 2026

Measuring Caspase Activity Using a Fluorometric Assay or Flow Cytometry
Published on: March 24, 2023
Caspase-7 mediates caspase-1-induced apoptosis independently of Bid
Mamunur Rashid Mahib1,2, Shoko Hosojima1, Hiroko Kushiyama1
1Division of Immunology and Molecular Biology, Cancer Research Institute, Kanazawa University, Kanazawa, Japan.
Abstract:
Inflammasomes are innate immune mechanisms that activate caspase-1 in response to a variety of stimuli, including Salmonella infection. Active caspase-1 has a potential to induce two different types of cell death, depending on the expression of the pyroptosis mediator gasdermin D (GSDMD); following caspase-1 activation, GSDMD-sufficient and GSDMD-null/low cells undergo pyroptosis and apoptosis, respectively. Although Bid, a caspase-1 substrate, plays a critical role in caspase-1 induction of apoptosis in GSDMD-null/low cells, an additional mechanism that mediates this cell death independently of Bid has also been suggested. This study investigated the Bid-independent pathway of caspase-1-induced apoptosis. Caspase-1 has been reported to process caspase-6 and caspase-7. Silencing of caspase-7, but not caspase-6, significantly reduced the activation of caspase-3 induced by caspase-1, which was activated by chemical dimerization, in GSDMD/Bid-deficient cells. CRISPR/Cas9-mediated depletion of caspase-7 had the same effect on the caspase-3 activation. Moreover, in the absence of GSDMD and Bid, caspase-7 depletion reduced apoptosis induced by caspase-1 activation. Caspase-7 was activated following caspase-1 activation independently of caspase-3, suggesting that caspase-7 acts downstream of caspase-1 and upstream of caspase-3. Salmonella induced the activation of caspase-3 in GSDMD-deficient macrophages, which relied partly on Bid and largely on caspase-1. The caspase-3 activation and apoptotic morphological changes seen in Salmonella-infected GSDMD/Bid-deficient macrophages were attenuated by caspase-7 knockdown. These results suggest that in addition to Bid, caspase-7 can also mediate caspase-1-induced apoptosis and provide mechanistic insights into inflammasome-associated cell death that is one major effector mechanism of inflammasomes.
Insights
Inflammasomes activate caspase-1, leading to cell death. This study reveals caspase-7 mediates a Bid-independent apoptosis pathway, crucial for inflammasome-associated cell death, especially during Salmonella infection.
Area of Science:
- Innate immunity
- Cell death pathways
- Molecular mechanisms of inflammasomes
Background:
- Inflammasomes activate caspase-1, initiating innate immune responses and cell death.
- Caspase-1 can induce pyroptosis or apoptosis, depending on gasdermin D (GSDMD) expression.
- Bid is a known mediator of caspase-1-induced apoptosis in GSDMD-deficient cells, but other pathways may exist.
Purpose of the Study:
- To investigate the Bid-independent pathway of caspase-1-induced apoptosis.
- To elucidate the role of caspase-7 in inflammasome-mediated cell death.
Main Methods:
- Utilized gene silencing (siRNA) and CRISPR/Cas9 to deplete caspase-7, caspase-6, GSDMD, and Bid.
- Induced caspase-1 activation via chemical dimerization and Salmonella infection in macrophage models.
- Assessed caspase-3 activation and apoptosis induction.
Main Results:
- Caspase-7 depletion significantly reduced caspase-1-induced caspase-3 activation and apoptosis in GSDMD/Bid-deficient cells.
- Caspase-7 activation occurred downstream of caspase-1 and upstream of caspase-3, independent of caspase-3.
- Caspase-7 knockdown attenuated Salmonella-induced apoptosis in GSDMD/Bid-deficient macrophages.
Conclusions:
- Caspase-7 acts as a key mediator of caspase-1-induced apoptosis, independent of Bid.
- This finding provides mechanistic insights into inflammasome-associated cell death pathways.
- Caspase-7 is a critical effector in inflammasome-mediated apoptosis, particularly during bacterial infections.
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