Synthetic Silvestrol Analogues as Potent and Selective Protein Synthesis Inhibitors

Tao Liu(Infinity Pharmaceuticals (United States)), Somarajan Nair(Infinity Pharmaceuticals (United States)), André Lescarbeau(Infinity Pharmaceuticals (United States)), Jitendra D. Belani(Infinity Pharmaceuticals (United States)), Stéphane Peluso(Infinity Pharmaceuticals (United States)), James Conley(Infinity Pharmaceuticals (United States)), Bonnie Tillotson(Infinity Pharmaceuticals (United States)), Patrick J. O’Hearn(Infinity Pharmaceuticals (United States)), Sherri Smith(Infinity Pharmaceuticals (United States)), Kelly L. Slocum(Infinity Pharmaceuticals (United States)), Kip A. West(Infinity Pharmaceuticals (United States)), Joseph Helble(Infinity Pharmaceuticals (United States)), Mark Douglas(Infinity Pharmaceuticals (United States)), Adilah Bahadoor(Infinity Pharmaceuticals (United States)), Janid A. Ali(Infinity Pharmaceuticals (United States)), Karen McGovern(Infinity Pharmaceuticals (United States)), Christian Fritz(Infinity Pharmaceuticals (United States)), Vito J. Palombella(Infinity Pharmaceuticals (United States)), Andrew A. Wylie(Infinity Pharmaceuticals (United States)), Alfredo Castro(Infinity Pharmaceuticals (United States)), Martin Tremblay(Infinity Pharmaceuticals (United States))
Journal of Medicinal Chemistry
October 1, 2012
Cited by 80Open Access
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Abstract

Misregulation of protein translation plays a critical role in human cancer pathogenesis at many levels. Silvestrol, a cyclopenta[b]benzofuran natural product, blocks translation at the initiation step by interfering with assembly of the eIF4F translation complex. Silvestrol has a complex chemical structure whose functional group requirements have not been systematically investigated. Moreover, silvestrol has limited development potential due to poor druglike properties. Herein, we sought to develop a practical synthesis of key intermediates of silvestrol and explore structure-activity relationships around the C6 position. The ability of silvestrol and analogues to selectively inhibit the translation of proteins with high requirement on the translation-initiation machinery (i.e., complex 5'-untranslated region UTR) relative to simple 5'UTR was determined by a cellular reporter assay. Simplified analogues of silvestrol such as compounds 74 and 76 were shown to have similar cytotoxic potency and better ADME characteristics relative to those of silvestrol.


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