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Updated: Jul 9, 2026

In Vitro Cleavage Assays using Purified Recombinant Drosophila Caspases for Substrate Screening
Published on: October 6, 2022
A biochemical analysis of the activation of the Drosophila caspase DRONC
1Department of Haematology, Hanson Institute, IMVS, Adelaide, SA, Australia. loretta.dorstyn@imvs.sa.gov.au
Abstract:
The activation of caspases is the principal event in the execution of apoptosis. Initiator caspases are activated through an autocatalytic mechanism often involving dimerisation or oligomerisation. In Drosophila, the only initiator caspase DRONC, is tightly inhibited by DIAP1 and removal of DIAP1 permits activation of DRONC by the Drosophila Apaf-1-related killer, ARK. ARK is proposed to facilitate DRONC oligomerisation and autoprocessing at residue E352. This study examines whether autoprocessing of DRONC is required for its activation and for DRONC-mediated cell death. Using purified recombinant proteins, we show here that while DRONC autocleaves at residue E352, mutation of this site did not abolish enzyme activation, DRICE-induced cleavage of DRONC or DRONC-mediated activation of DRICE. We performed a detailed mutational analysis of DRONC cleavage sites and show that overexpression of DRONC cleavage mutants in Drosophila cells retain pro-apoptotic activity. Using an in vitro cell-free assay, we found ARK alone did not activate DRONC and demonstrate a requirement for an additional cytosolic factor in ARK-mediated DRONC activation. These results suggest that, similar to mammalian caspase-2 and caspase-9, the initial cleavage of DRONC is not essential for its activation and suggest a mechanism of ARK-mediated DRONC activation different from that proposed previously.
Insights
The initial cleavage of Drosophila
Area of Science:
- Cellular biology
- Molecular biology
- Biochemistry
Background:
- Caspase activation is central to apoptosis.
- In Drosophila, DRONC is the sole initiator caspase, inhibited by DIAP1.
- ARK is proposed to activate DRONC via oligomerization and autoprocessing.
Purpose of the Study:
- To investigate if DRONC autoprocessing is essential for its activation and pro-apoptotic function.
- To elucidate the mechanism of ARK-mediated DRONC activation.
Main Methods:
- Purified recombinant protein analysis.
- Site-directed mutagenesis of DRONC cleavage sites.
- In vitro cell-free assays.
- Overexpression studies in Drosophila cells.
Main Results:
- DRONC autocleavage at E352 occurs, but mutation of this site does not prevent activation or downstream cleavage.
- DRONC cleavage mutants retain pro-apoptotic activity when overexpressed.
- ARK alone does not activate DRONC; an additional cytosolic factor is required.
Conclusions:
- Initial DRONC cleavage is not essential for its activation or pro-apoptotic function.
- The mechanism of ARK-mediated DRONC activation differs from prior proposals.
- Findings align with mammalian caspase-2 and caspase-9 activation pathways.

