4.8 Article

Small-Molecule Activators of a Proenzyme

Journal

SCIENCE
Volume 326, Issue 5954, Pages 853-858

Publisher

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.1177585

Keywords

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Funding

  1. National Institutes of Health [R21 N5057022, R01 CA136779]
  2. National Cancer Institute Postdoctoral Fellowship [F32 CA119641-03]
  3. UC Cancer Research Committee Fellowship
  4. Hartwell Foundation

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Virtually all of the 560 human proteases are stored as inactive proenyzmes and are strictly regulated. We report the identification and characterization of the first small molecules that directly activate proenzymes, the apoptotic procaspases-3 and -6. It is surprising that these compounds induce autoproteolytic activation by stabilizing a conformation that is both more active and more susceptible to intermolecular proteolysis. These procaspase activators bypass the normal upstream proapoptotic signaling cascades and induce rapid apoptosis in a variety of cell lines. Systematic biochemical and biophysical analyses identified a cluster of mutations in procaspase-3 that resist small-molecule activation both in vitro and in cells. Compounds that induce gain of function are rare, and the activators reported here will enable direct control of the executioner caspases in apoptosis and in cellular differentiation. More generally, these studies presage the discovery of other proenzyme activators to explore fundamental processes of proenzyme activation and their fate-determining roles in biology.

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