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Total Synthesis of (−)‐Zampanolide and Structure–Activity Relationship Studies on (−)‐Dactylolide Derivatives
Authors:Dr. Didier Zurwerra  M. Sc. Chem. Florian Glaus  M. Sc. Chem. Leo Betschart  Julia Schuster  Prof. Dr. Jürg Gertsch  Dr. Walter Ganci  Prof. Dr. Karl‐Heinz Altmann
Affiliation:1. Department of Chemistry and Applied Biosciences, Institute of Pharmaceutical Sciences, Swiss Federal Institute of Technology (ETH) Zürich, HCI H405, Wolfgang‐Pauli‐Str. 10, 8093 Zürich (Switzerland), Fax: (+41)?44‐6331369 http://www.pharma.ethz.ch/institute_groups/institute_groups/pharmaceutical_biology/;2. University of Bern, Institute of Biochemistry and Molecular Medicine, Bühlstrasse 28, 3012 Bern (Switzerland);3. University of Zürich, Organic Chemistry Institute, Winterthurerstrasse 190, 8057 Zürich (Switzerland)
Abstract:A new total synthesis of the marine macrolide (?)‐zampanolide ( 1 ) and the structurally and stereochemically related non‐natural levorotatory enantiomer of (+)‐dactylolide ( 2 ), that is, ent‐ 2 , has been developed. The synthesis features a high‐yielding, selective intramolecular Horner–Wadsworth–Emmons (HWE) reaction to close the 20‐membered macrolactone ring of 1 and ent‐ 2 . The β‐keto phosphonate/aldehyde precursor for the ring‐closure reaction was obtained by esterification of a ω‐diethylphosphono carboxylic acid fragment and a secondary alcohol fragment incorporating the THP ring that is embedded in the macrocyclic core structure of 1 and ent‐ 2 . THP ring formation was accomplished through a segment coupling Prins‐type cyclization. Employing the same overall strategy, 13‐desmethylene‐ent‐ 2 as well as the monocyclic desTHP derivatives of 1 and ent‐ 2 were prepared. Synthetic 1 inhibited human cancer cell growth in vitro with nM IC50 values, while ent‐ 2 , which lacks the diene‐containing hemiaminal‐linked side chain of 1 , is 25‐ to 260‐fold less active. 13‐Desmethylene‐ent‐ 2 as well as the reduced versions of ent‐ 2 and 13‐desmethylene‐ent‐ 2 all showed similar cellular activity as ent‐ 2 itself. The same activity level was attained by the monocyclic desTHP derivative of 1 . Oxidation of the aldehyde functionality of ent‐ 2 gave a carboxylic acid that was converted into the corresponding N‐hexyl amide. The latter showed only μM antiproliferative activity, thus being several hundred‐fold less potent than 1 .
Keywords:cancer  dactylolide  natural product  total synthesis  tubulin  zampanolide
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