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Updated: Sep 27, 2026

Lighting Up the Pathways to Caspase Activation Using Bimolecular Fluorescence Complementation
Published on: March 5, 2018
A subset of caspase substrates functions as the Jekyll and Hyde of apoptosis
Jian-Yan Yang1, Christian Widmann
1Institut de biologie cellulaire et de morphologie (IBCM), Université de Lausanne, Switzerland.
Abstract:
Cleavage of caspase substrates is believed to be the commitment point that will lead a cell towards apoptosis. While the cleavage of some caspase substrates participates directly in the dismantling of the cell, others regulate the extent of caspase activation. In this communication, we discuss some recent findings indicating that two caspase substrates, MEKK1 and RasGAP, change their functions from anti- to pro-apoptotic as caspase activity increases. MEKK1 is a MAPK kinase kinase regulating the JNK MAPK pathway. As a full-length protein, MEKK1 generates protective signals (e.g. in cardiomyocytes), but potentiates apoptosis when cleaved by caspases. This switch is mediated by a translocation of the kinase activity from insoluble to soluble cellular structures. RasGAP is a regulator of Ras GTPase family members. As a full-length protein, RasGAP does not modulate apoptosis. However, low caspase activity readily induces the cleavage of RasGAP into an N-terminal fragment that generates potent anti-apoptotic signals. At higher caspase activity, the N-terminal fragment is further cleaved into two fragments that strongly potentiate apoptosis. RasGAP can, thus, be viewed as an apoptostat because it allows the cells to determine when caspases have been mildly activated to fulfill functions other than apoptosis or when caspases are strongly activated to mediate apoptosis.
Insights
Caspase substrates MEKK1 and RasGAP switch from anti- to pro-apoptotic roles as caspase activity rises. This reveals how cells regulate apoptosis extent through substrate cleavage and function.
Area of Science:
- Cellular Biology
- Biochemistry
Background:
- Caspase substrate cleavage is a key step in apoptosis.
- Some substrates regulate apoptosis extent rather than directly causing cell death.
Purpose of the Study:
- To investigate the dual roles of MEKK1 and RasGAP as caspase substrates.
- To understand how their function shifts from anti-apoptotic to pro-apoptotic with increasing caspase activity.
Main Methods:
- Analysis of caspase substrate cleavage and function.
- Investigating protein translocation and fragmentation.
- Assessing apoptotic signaling pathways.
Main Results:
- Full-length MEKK1 (MAPK kinase kinase) is protective, but cleaved MEKK1 potentiates apoptosis via translocation.
- Full-length RasGAP is neutral, but its cleavage fragments modulate apoptosis, acting as an 'apoptostat'.
Conclusions:
- MEKK1 and RasGAP cleavage by caspases dynamically alters their apoptotic function.
- These substrates act as sensors for caspase activity, fine-tuning the apoptotic response.
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