1. Academic Validation
  2. Synthesis, conformational preferences, and biological activity of conformational analogues of the microtubule-stabilizing agents, (-)-zampanolide and (-)-dactylolide

Synthesis, conformational preferences, and biological activity of conformational analogues of the microtubule-stabilizing agents, (-)-zampanolide and (-)-dactylolide

  • Medchemcomm. 2019 Apr 9;10(5):800-805. doi: 10.1039/c9md00164f.
Jeffrey L Henry 1 Matthew R Wilson 2 Michael P Mulligan 1 Taylor R Quinn 1 Dan L Sackett 3 Richard E Taylor 1
Affiliations

Affiliations

  • 1 The Warren Family Research Center for Drug Discovery and Development and the Department of Chemistry & Biochemistry , University of Notre Dame , Notre Dame , IN 46556-5670 , USA . Email: rtaylor@nd.edu.
  • 2 Vertex Pharmaceuticals , 50 Northern Ave , Boston , MA 02210 , USA.
  • 3 Eunice Kennedy Shriver National Institute of Child Health and Human Development , National Institutes of Health , Bethesda , MD 20892 , USA.
Abstract

Zampanolide and dactylolide are microtubule-stabilizing polyketides possessing potent cytotoxicity towards a variety of Cancer cell lines. Using our understanding of the conformational preferences of the Macrolide core in both Natural Products, we hypothesized that analogues lacking the C17-methyl group would maintain the necessary conformation for bioactivity while reducing the number of synthetic manipulations necessary for their synthesis. Analogues 3, 4 and 5 were prepared via total synthesis, and their conformational preferences were determined through computational and high-field NMR studies. While no observable activities were present in dactylolide analogues 3 and 4, zampanolide analogue 5 exhibited sub-micromolar cytotoxicity. Herein, we describe these efforts towards understanding the structure- and conformation-activity relationships of dactylolide and zampanolide.

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