Discodermolide, A Cytotoxic Marine Agent That Stabilizes Microtubules More Potently Than Taxol

Computer-assisted structure analysis indicated (+)-discodermolide, a polyhydroxylated alkatetraene lactone marine natural product, was an antimitotic compound, and we confirmed this prediction. Previous work had shown an accumulation of discodermolide-treated cells in the G2/M portion of the cell cy...

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Veröffentlicht in:Biochemistry (Easton) 1996-01, Vol.35 (1), p.243-250
Hauptverfasser: ter Haar, Ernst, Kowalski, Richard J, Hamel, Ernest, Lin, Chii M, Longley, Ross E, Gunasekera, Sarath P, Rosenkranz, Herbert S, Day, Billy W
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Sprache:eng
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Zusammenfassung:Computer-assisted structure analysis indicated (+)-discodermolide, a polyhydroxylated alkatetraene lactone marine natural product, was an antimitotic compound, and we confirmed this prediction. Previous work had shown an accumulation of discodermolide-treated cells in the G2/M portion of the cell cycle, and we have now found that discodermolide arrests Burkitt lymphoma cells in mitosis. Discodermolide-treated breast carcinoma cells displayed spectacular rearrangement of the microtubule cytoskeleton, including extensive microtubule bundling. Microtubule rearrangement that occurred with 10 nM discodermolide required 1 μM taxol. Discodermolide had equally impressive effects on tubulin assembly in vitro. Near-total polymerization occurred at 0 °C with tubulin plus microtubule-associated proteins (MAPs) under conditions in which taxol at an identical concentration was inactive. Without MAPs and/or without GTP, tubulin assembly was also more vigorous with discodermolide than with taxol under every reaction condition examined. Discodermolide-induced polymer differed from taxol-induced polymer in that it was completely stable at 0 °C in the presence of high concentrations of Ca2+. In a quantitative assay designed to select for agents more effective than taxol in inducing assembly, discodermolide had an EC50 value of 3.2 μM versus 23 μM for taxol.
ISSN:0006-2960
1520-4995
DOI:10.1021/bi9515127