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Updated: Jun 27, 2025

Lighting Up the Pathways to Caspase Activation Using Bimolecular Fluorescence Complementation
Published on: March 5, 2018
Dissecting caspase-2-mediated cell death: from intrinsic PIDDosome activation to chemical modulation
Mengxue Zeng1,2, Kun Wang2, Qingcui Wu2
1State Key Laboratory of Oncology in South China, Guangdong Provincial Clinical Research Center for Cancer, Sun Yat-sen University Cancer Center, Guangzhou 510060, China.
Abstract:
Caspase-2, a highly conserved member of the caspase family, is considered an initiator caspase that triggers apoptosis in response to some cellular stresses. Previous studies suggest that an intracellular multi-protein complex PIDDosome, induced by genotoxic stress, serves as a platform for caspase-2 activation. Due to caspase-2's inability to process effector caspases, however, the mechanism underlying caspase-2-mediated cell death upon PIDDosome activation remains unclear. Here, we conducted an unbiased genome-wide genetic screen and identified that the Bcl2 family protein BID is required for PIDDosome-induced, caspase-2-mediated apoptosis. PIDDosome-activated caspase-2 directly and functionally processes BID to signal the mitochondrial pathway for apoptosis induction. In addition, a designed chemical screen identified a compound, HUHS015, which specifically activates caspase-2-mediated apoptosis. HUHS015-stimulated apoptosis also requires BID but is independent of the PIDDosome. Through extensive structure-activity relationship efforts, we identified a derivative with a potency of ~60 nmol/L in activating caspase-2-mediated apoptosis. The HUHS015-series of compounds act as efficient agonists that directly target the interdomain linker in caspase-2, representing a new mode of initiator caspase activation. Human and mouse caspase-2 differ in two crucial residues in the linker, rendering a selectivity of the agonists for human caspase-2. The caspase-2 agonists are valuable tools to explore the physiological roles of caspase-2-mediated cell death and a base for developing small-molecule drugs for relevant diseases.
Insights
Caspase-2 initiates apoptosis by processing BID, a protein crucial for the mitochondrial pathway. New chemical agonists activate caspase-2, offering tools for disease research and drug development.
Area of Science:
- Cellular Biology
- Molecular Biology
- Biochemistry
Background:
- Caspase-2 is an initiator caspase involved in apoptosis.
- The PIDDosome complex activates caspase-2 upon genotoxic stress.
- The precise mechanism of caspase-2-mediated apoptosis is not fully understood.
Purpose of the Study:
- To elucidate the mechanism of caspase-2-mediated apoptosis.
- To identify novel chemical activators of caspase-2.
- To explore the therapeutic potential of caspase-2 agonists.
Main Methods:
- Genome-wide genetic screen to identify factors involved in caspase-2 activation.
- Chemical screening to discover caspase-2 agonists.
- Structure-activity relationship studies to optimize agonist potency and selectivity.
Main Results:
- BID was identified as a key protein processed by caspase-2 for apoptosis induction.
- A novel chemical compound, HUHS015, was found to activate caspase-2-mediated apoptosis independently of the PIDDosome.
- A derivative of HUHS015 showed high potency (~60 nmol/L) and selectivity for human caspase-2.
Conclusions:
- Caspase-2 directly processes BID to trigger apoptosis via the mitochondrial pathway.
- HUHS015-series compounds represent a new class of direct caspase-2 agonists targeting its interdomain linker.
- These agonists are valuable tools for studying caspase-2 function and developing targeted therapies.
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