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Measuring Composition of CD95 Death-Inducing Signaling Complex and Processing of Procaspase-8 in this Complex
Published on: August 2, 2021
Redesigning the procaspase-8 dimer interface for improved dimerization
Chunxiao Ma1, Sarah H MacKenzie, A Clay Clark
1Department of Molecular and Structural Biochemistry, North Carolina State University, Raleigh, North Carolina, 27695.
Abstract:
Caspase-8 is a cysteine directed aspartate-specific protease that is activated at the cytosolic face of the cell membrane upon receptor ligation. A key step in the activation of caspase-8 depends on adaptor-induced dimerization of procaspase-8 monomers. Dimerization is followed by limited autoproteolysis within the intersubunit linker (IL), which separates the large and small subunits of the catalytic domain. Although cleavage of the IL stabilizes the dimer, the uncleaved procaspase-8 dimer is sufficiently active to initiate apoptosis, so dimerization of the zymogen is an important mechanism to control apoptosis. In contrast, the effector caspase-3 is a stable dimer under physiological conditions but exhibits little enzymatic activity. The catalytic domains of caspases are structurally similar, but it is not known why procaspase-8 is a monomer while procaspase-3 is a dimer. To define the role of the dimer interface in assembly and activation of procaspase-8, we generated mutants that mimic the dimer interface of effector caspases. We show that procaspase-8 with a mutated dimer interface more readily forms dimers. Time course studies of refolding also show that the mutations accelerate dimerization. Transfection of HEK293A cells with the procaspase-8 variants, however, did not result in a significant increase in apoptosis, indicating that other factors are required in vivo. Overall, we show that redesigning the interface of procaspase-8 to remove negative design elements results in increased dimerization and activity in vitro, but increased dimerization, by itself, is not sufficient for robust activation of apoptosis.
Insights
Altering the dimer interface of procaspase-8 (a key apoptosis initiator) enhances its dimerization and activity in vitro. However, increased dimerization alone is insufficient for robust apoptosis activation in vivo.
Area of Science:
- Biochemistry
- Molecular Biology
- Cell Biology
Background:
- Caspase-8 is a protease crucial for initiating apoptosis, activated by dimerization.
- Procaspase-8 exists as a monomer, unlike the constitutively dimeric effector caspase-3.
- The structural basis for procaspase-8's monomeric state and its role in activation remains unclear.
Purpose of the Study:
- To investigate the role of the dimer interface in procaspase-8 assembly and activation.
- To engineer procaspase-8 mutants mimicking the dimer interface of effector caspases.
- To determine if enhanced dimerization of procaspase-8 is sufficient for apoptosis induction.
Main Methods:
- Site-directed mutagenesis to alter the procaspase-8 dimer interface.
- In vitro refolding and dimerization assays.
- Apoptosis assays in HEK293A cells following transfection with procaspase-8 variants.
Main Results:
- Mutant procaspase-8 variants with altered dimer interfaces showed increased dimerization rates in vitro.
- Refolding studies indicated accelerated dimerization upon interface modification.
- Transfection of engineered procaspase-8 variants did not significantly increase apoptosis in HEK293A cells.
Conclusions:
- Redesigning the procaspase-8 interface to remove negative design elements promotes dimerization and activity in vitro.
- Increased dimerization of procaspase-8 is necessary but not sufficient for robust in vivo apoptosis activation.
- Additional cellular factors are required for the complete activation of apoptosis initiated by procaspase-8.
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