Total synthesis of the cyclodepsipeptide apratoxin A and its analogues and assessment of their biological activities

Ma Dawei, Bin Zou, Guorong Cai, Xiaoyi Hu, Jun O. Liu

Research output: Contribution to journalArticlepeer-review

81 Scopus citations

Abstract

A novel total synthesis of apratoxin A is described, with key steps including the assembly of its ketide segment through a D-proline-catalyzed direct aldol reaction and Oppolzer's anti aldol reaction and the preparation of its thiazoline unit in a biomimetic synthesis. An oxazoline analogue of apratoxin A has also been elaborated by a similar approach. This compound has a potency against HeLa cell proliferation only slightly lower than that of apratoxin A, whilst a C(40)-demethylated oxazoline analogue of apratoxin A displays a much lower cytotoxicity and the C(37)-epimer and C(37) demethylation prod uct of this new analogue are inactive. These results suggest that the two methyl groups at C(37) and C(40) and the stereochemistry at C(37) are essential for the potent cellular activity of the oxazoline analogue of apratoxin A. Further biological analysis revealed that both synthetic apratoxin A and its oxazoline analogue inhibited cell proliferation by causing cell cycle arrest in the G1 phase.

Original languageEnglish (US)
Pages (from-to)7615-7626
Number of pages12
JournalChemistry - A European Journal
Volume12
Issue number29
DOIs
StatePublished - Oct 10 2006

Keywords

  • Aldol reaction
  • Cell cycle
  • Cyclic depsipeptides
  • Cylotoxlcity
  • Total synthesis

ASJC Scopus subject areas

  • Catalysis
  • Organic Chemistry

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