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Updated: Sep 26, 2026

Evaluation of Caspase Activation to Assess Innate Immune Cell Death
Published on: January 20, 2023
The cell adhesion molecule CEACAM1-L is a substrate of caspase-3-mediated cleavage in apoptotic mouse intestinal
Caroline Houde1, Sophie Roy, Nelly Leung
1McGill Cancer Centre, McGill University, Montreal, Quebec H3G 1Y6, Canada.
Abstract:
The CEACAM1 cell adhesion molecule is a member of the carcinoembryonic antigen family. In the mouse, four distinct isoforms are generated by alternative splicing. These encode either two or four immunoglobulin domains linked through a transmembrane domain to a cytoplasmic domain that encompasses either a short 10-amino acid tail or a longer one of 73 amino acids. Inclusion of exon 7, well conserved in evolution, generates the long cytoplasmic domain. A potential caspase recognition site in mouse, rat, and human CEACAM1-L also becomes available within the peptide encoded by exon 7. We used CEACAM1-L-transfected mouse colon carcinoma CT51 cells treated with three different apoptotic agents to study its fate during cell death. We found that CEACAM1-L is cleaved resulting in rapid degradation of most of its 8-kDa cytoplasmic domain. Caspase-mediated cleavage was demonstrated using purified recombinant caspases. The long cytoplasmic domain was cleaved specifically by caspase-3 in vitro but not by caspase-7 or -8. Moreover cleavage of CEACAM1-L in apoptotic cells was blocked by addition of a selective caspase-3 inhibitor to the cultures. Using point and deletion mutants, the conserved DQRD motif in the membrane-proximal cytoplasmic domain was identified as a caspase cleavage site. We also show that once CEACAM1-L is caspase-cleaved it becomes a stronger adhesion molecule than both the shorter and the longer expressing isoforms.
Insights
The carcinoembryonic antigen cell adhesion molecule 1 (CEACAM1-L) is cleaved by caspase-3 during apoptosis. This cleavage enhances CEACAM1-L
Area of Science:
- Molecular biology
- Cell biology
- Biochemistry
Background:
- CEACAM1 is a cell adhesion molecule in the carcinoembryonic antigen family.
- Alternative splicing generates four mouse CEACAM1 isoforms with varying cytoplasmic domains.
- Exon 7 inclusion creates a long cytoplasmic domain (CEACAM1-L) with a potential caspase site.
Purpose of the Study:
- To investigate the fate of CEACAM1-L during apoptosis.
- To identify the specific caspases involved in CEACAM1-L cleavage.
- To determine the functional consequences of CEACAM1-L cleavage.
Main Methods:
- Transfection of mouse colon carcinoma CT51 cells with CEACAM1-L.
- Treatment of cells with apoptotic agents.
- Analysis of CEACAM1-L cleavage using recombinant caspases and inhibitors.
- Identification of the caspase cleavage site using mutants.
Main Results:
- CEACAM1-L undergoes rapid degradation of its cytoplasmic domain during apoptosis.
- Caspase-3 specifically cleaves CEACAM1-L at the DQRD motif.
- Cleavage is blocked by a caspase-3 inhibitor.
- Caspase-cleaved CEACAM1-L exhibits stronger cell adhesion.
Conclusions:
- Caspase-3-mediated cleavage of CEACAM1-L is a key event during apoptosis.
- This cleavage modifies CEACAM1-L's adhesive properties.
- The DQRD motif is the critical site for caspase-3 recognition and cleavage.
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