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PAC-1 Activates Procaspase-3 in Vitro through Relief of Zinc-Mediated Inhibition

Authors :
Quinn P. Peterson
Diana C. West
Kara N. Ramsey
David R. Goode
Joy J.Y. Lee
Paul J. Hergenrother
Source :
Journal of Molecular Biology. 388:144-158
Publication Year :
2009
Publisher :
Elsevier BV, 2009.

Abstract

The direct induction of apoptosis has emerged as a powerful anti-cancer strategy, and small molecules that either inhibit or activate certain proteins in the apoptotic pathway have great potential as novel chemotherapeutic agents. Central to apoptosis is the activation of the zymogen procaspase-3 to caspase-3. Caspase-3 is the key “executioner” caspase, catalyzing the hydrolysis of a multitude of protein substrates within the cell. Interestingly, procaspase-3 levels are often elevated in cancer cells, suggesting a compound that directly stimulates the activation of procaspase-3 to caspase-3 could selectively induce apoptosis in cancer cells. We recently reported the discovery of a compound, PAC-1, which enhances procaspase-3 activity in vitro and induces apoptotic death in cancer cells in culture and in mouse xenograft models. Described herein is the mechanism by which PAC-1 activates procaspase-3 in vitro. We show that zinc inhibits the enzymatic activity of procaspase-3, and that PAC-1 strongly activates procaspase-3 in buffers that contain zinc. PAC-1 and zinc form a tight complex with one another, with a dissociation constant of approximately 42 nM. The combined data indicate that PAC-1 activates procaspase-3 in vitro by sequestering inhibitory zinc ions, thus allowing procaspase-3 to autoactivate itself to caspase-3. The small molecule mediated activation of procaspases has great therapeutic potential and thus this discovery of the in vitro mechanism of action of PAC-1 is critical to the development and optimization of other procaspase-activating compounds.

Details

ISSN :
00222836
Volume :
388
Database :
OpenAIRE
Journal :
Journal of Molecular Biology
Accession number :
edsair.doi.dedup.....f713a2732d42850a86a5a5aa0db19f2f
Full Text :
https://doi.org/10.1016/j.jmb.2009.03.003