Degradomics reveals that cleavage specificity profiles of caspase-2 and effector caspases are alike

Magdalena Wejda1, Francis Impens, Nozomi Takahashi

  • 1Department for Molecular Biomedical Research, Flanders Institute for Biotechnology (VIB), Ghent University, B-9052 Ghent (Zwijnaarde), Belgium.

Insights

Caspase-2, an initiator caspase, shares protease specificity with executioner caspases-3 and -7. This suggests caspase-2 may function as a proapoptotic caspase after activation.

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Cell Biology

Background:

  • Caspase-2 is an initiator caspase with a CARD domain involved in activation complexes.
  • Its precise function and substrate specificity remain largely uncharacterized.

Purpose of the Study:

  • To compare the protease cleavage specificity of human caspase-2 with caspases-3 and -7.
  • To identify physiological substrates and determine the consensus cleavage sequence for caspase-2.

Main Methods:

  • N-terminal COmbined FRActional DIagonal Chromatography (COFRADIC) was used to analyze cell lysates.
  • Protease specificity profiles were compared between recombinant human caspases-2, -3, and -7.

Main Results:

  • Analysis identified 68 cleavage sites in 61 proteins, revealing overlapping specificities among caspases-2, -3, and -7.
  • The consensus cleavage sequence was identified as DEVD↓G.
  • Asp(563) in eukaryotic translation initiation factor 4B (eIF4B) was confirmed as a caspase-2 preferred cleavage site.

Conclusions:

  • Activated human caspase-2 exhibits significant overlap in protease specificity with caspases-3 and -7.
  • These findings suggest caspase-2 may act as a proapoptotic caspase upon release from its activating complex.

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