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Comparative Study
. 2006 Oct;2(10):543-50.
doi: 10.1038/nchembio814. Epub 2006 Aug 27.

Small-molecule activation of procaspase-3 to caspase-3 as a personalized anticancer strategy

Affiliations
Comparative Study

Small-molecule activation of procaspase-3 to caspase-3 as a personalized anticancer strategy

Karson S Putt et al. Nat Chem Biol. 2006 Oct.

Abstract

Mutation and aberrant expression of apoptotic proteins are hallmarks of cancer. These changes prevent proapoptotic signals from being transmitted to executioner caspases, thereby averting apoptotic death and allowing cellular proliferation. Caspase-3 is the key executioner caspase, and it exists as an inactive zymogen that is activated by upstream signals. Notably, concentrations of procaspase-3 in certain cancerous cells are significantly higher than those in noncancerous controls. Here we report the identification of a small molecule (PAC-1) that directly activates procaspase-3 to caspase-3 in vitro and induces apoptosis in cancerous cells isolated from primary colon tumors in a manner directly proportional to the concentration of procaspase-3 inside these cells. We found that PAC-1 retarded the growth of tumors in three different mouse models of cancer, including two models in which PAC-1 was administered orally. PAC-1 is the first small molecule known to directly activate procaspase-3 to caspase-3, a transformation that allows induction of apoptosis even in cells that have defective apoptotic machinery. The direct activation of executioner caspases is an anticancer strategy that may prove beneficial in treating the many cancers in which procaspase-3 concentrations are elevated.

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Comment in

  • Flipping the safety catch of procaspase-3.
    Porter AG. Porter AG. Nat Chem Biol. 2006 Oct;2(10):509-10. doi: 10.1038/nchembio1006-509. Nat Chem Biol. 2006. PMID: 16983381 No abstract available.
  • Small molecules not direct activators of caspases.
    Denault JB, Drag M, Salvesen GS, Alves J, Heidt AB, Deveraux Q, Harris JL. Denault JB, et al. Nat Chem Biol. 2007 Sep;3(9):519; author reply 520. doi: 10.1038/nchembio0907-519. Nat Chem Biol. 2007. PMID: 17710090 No abstract available.

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