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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
EphA receptors form a complex with caspase-8 to induce apoptotic cell death
Haeryung Lee1, Sunjung Park1, Young-Sook Kang2
1Department of Biological Science.
Abstract:
EphA7 has been implicated in the regulation of apoptotic cell death in neural epithelial cells. In this report, we provide evidence that EphA7 interacts with caspase-8 to induce apoptotic cell signaling. First, a pull-down assay using biotinylated ephrinA5-Fc showed that EphA7 coprecipitated with wild type caspase-8 or catalytically inactive caspase-8 mutant. Second, co-transfection of EphA7 with caspase-8 significantly increased the number of cleaved caspase-3 positive apoptotic cells under an experimental condition where transfection of EphA7 or caspase-8 alone did not affect cell viability or apoptosis. EphA4 also had a causative role in inducing apoptotic cell death with caspase-8, whereas EphA8 did not. Third, caspase-8 catalytic activity was essential for the apoptotic signaling cascade, whereas tyrosine kinase activity of the EphA4 receptor was not. Interestingly, we found that kinaseinactive EphA4 was well co-localized at the plasma membrane with catalytically inactive caspase-8, suggesting that an interaction between these mutant proteins was more stable. Finally, we observed that the extracellular region of the EphA7 receptor was critical for interacting with caspase-8, whereas the cytoplasmic region of EphA7 was not. Therefore, we propose that Eph receptors physically associate with a transmembrane protein to form an apoptotic signaling complex and that this unidentified receptorlike protein acts as a biochemical linker between the Eph receptor and caspase-8.
Insights
EphA7 receptor interacts with caspase-8 to trigger programmed cell death in neural cells. This interaction is crucial for initiating apoptotic signaling, with the extracellular region of EphA7 being key.
Area of Science:
- Cell Biology
- Molecular Biology
- Neuroscience
Background:
- EphA7 is involved in regulating apoptosis in neural epithelial cells.
- Understanding the molecular mechanisms of EphA7 in cell death is crucial.
Purpose of the Study:
- To investigate the interaction between EphA7 and caspase-8 in inducing apoptotic cell signaling.
- To elucidate the roles of EphA7, EphA4, and EphA8 in apoptosis mediated by caspase-8.
Main Methods:
- Pull-down assays using biotinylated ephrinA5-Fc to detect protein interactions.
- Co-transfection experiments to assess apoptosis induction.
- Analysis of caspase-3 cleavage and protein localization.
Main Results:
- EphA7 coprecipitated with both wild-type and inactive caspase-8.
- Co-transfection of EphA7 and caspase-8 increased apoptotic cells; EphA4 also induced apoptosis with caspase-8, but EphA8 did not.
- Caspase-8 catalytic activity was essential, but EphA4 tyrosine kinase activity was not.
- The extracellular region of EphA7 was critical for caspase-8 interaction.
Conclusions:
- EphA7 interacts with caspase-8 to induce apoptotic signaling in neural epithelial cells.
- An unidentified transmembrane protein may act as a linker between Eph receptors and caspase-8 in an apoptotic complex.
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