Design and synthesis of de novo cytotoxic alkaloids by mimicking the bioactive conformation of paclitaxel

Design, syntheses and biological evaluations of de novo paclitaxel mimics are reported. Novel paclitaxel-mimicking alkaloids were designed and synthesized based on a bioactive conformation of paclitaxel, that is, REDOR-Taxol. The alkaloid 2 bearing a 5-7-6 tricyclic scaffold mimics REDOR-Taxol best...

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Veröffentlicht in:Bioorganic & medicinal chemistry 2010-10, Vol.18 (19), p.7101-7112
Hauptverfasser: Sun, Liang, Veith, Jean M., Pera, Paula, Bernacki, Ralph J., Ojima, Iwao
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Sprache:eng
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Zusammenfassung:Design, syntheses and biological evaluations of de novo paclitaxel mimics are reported. Novel paclitaxel-mimicking alkaloids were designed and synthesized based on a bioactive conformation of paclitaxel, that is, REDOR-Taxol. The alkaloid 2 bearing a 5-7-6 tricyclic scaffold mimics REDOR-Taxol best among the compounds designed and was found to be the most potent compound against several drug-sensitive and drug-resistant human cancer cell lines. MD simulation study on the paclitaxel mimics 1 and 2 as well as REDOR-Taxol bound to the 1JFF tubulin structure was quite informative to evaluate the level of mimicking. The MD simulation study clearly distinguishes the 5-6-6 and 5-7-6 tricyclic scaffolds, and also shows substantial difference in the conformational stability of the tubulin-bound structures between 2 and REDOR-Taxol. The latter may account for the large difference in potency, and provides critical information for possible improvement in the future design of paclitaxel mimics.
ISSN:0968-0896
1464-3391
DOI:10.1016/j.bmc.2010.07.069