Synthesis of the biologically active natural product cyclodepsipeptides apratoxin A and its analogues

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Abstract

This paper describes the synthetic studies conducted on a marine natural product, cyclodepsipeptide apratoxin A. Total synthesis of the oxazoline analogue of apratoxin A was achieved. The conversion of oxazoline to thioamide, as well as thioamide formation from a serine-derived compound, were both unsuccessful. However, thiazoline formation from a cysteine-derived compound led to the total synthesis of apratoxin A. An in vivo study on synthetic apratoxin A revealed that it has potent antitumor activity, but with significant toxicity. Solid-phase synthesis of apratoxin A was accomplished using a preformed thiazoline derivative as a coupling unit. This method was used to synthesize several azido-containing analogues as precursors of molecular probes, and these analogues exhibited potent biological activity.

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Doi, T. (2014, August 1). Synthesis of the biologically active natural product cyclodepsipeptides apratoxin A and its analogues. Chemical and Pharmaceutical Bulletin. Pharmaceutical Society of Japan. https://doi.org/10.1248/cpb.c14-00268

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