Activation of apoptosis in vivo by a hydrocarbon-stapled BH3 helix

LD Walensky, AL Kung, I Escher, TJ Malia, S Barbuto… - science, 2004 - science.org
LD Walensky, AL Kung, I Escher, TJ Malia, S Barbuto, RD Wright, G Wagner, GL Verdine
science, 2004science.org
BCL-2 family proteins constitute a critical control point for the regulation of apoptosis. Protein
interaction between BCL-2 members is a prominent mechanism of control and is mediated
through the amphipathic α-helical BH3 segment, an essential death domain. We used a
chemical strategy, termed hydrocarbon stapling, to generate BH3 peptides with improved
pharmacologic properties. The stapled peptides, called “stabilized alpha-helix of BCL-2
domains”(SAHBs), proved to be helical, protease-resistant, and cell-permeable molecules …
BCL-2 family proteins constitute a critical control point for the regulation of apoptosis. Protein interaction between BCL-2 members is a prominent mechanism of control and is mediated through the amphipathic α-helical BH3 segment, an essential death domain. We used a chemical strategy, termed hydrocarbon stapling, to generate BH3 peptides with improved pharmacologic properties. The stapled peptides, called “stabilized alpha-helix of BCL-2 domains” (SAHBs), proved to be helical, protease-resistant, and cell-permeable molecules that bound with increased affinity to multidomain BCL-2 member pockets. A SAHB of the BH3 domain from the BID protein specifically activated the apoptotic pathway to kill leukemia cells. In addition, SAHB effectively inhibited the growth of human leukemia xenografts in vivo. Hydrocarbon stapling of native peptides may provide a useful strategy for experimental and therapeutic modulation of protein-protein interactions in many signaling pathways.
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