1. Academic Validation
  2. Total Synthesis of Aflastatin A

Total Synthesis of Aflastatin A

  • J Am Chem Soc. 2022 Nov 2;144(43):19953-19972. doi: 10.1021/jacs.2c08244.
David A Evans 1 Jason J Beiger 1 Jason D Burch 1 Peter H Fuller 1 Frank Glorius 1 Egmont Kattnig 1 David A Thaisrivongs 1 William C Trenkle 1 Joseph M Young 1 Jing Zhang 1
Affiliations

Affiliation

  • 1 Department of Chemistry and Chemical Biology, Harvard University, Cambridge, Massachusetts 02138, United States.
Abstract

The total syntheses of aflastatin A and its C3-C48 degradation fragment (6a, R = H) have been accomplished. The syntheses feature several complex diastereoselective fragment couplings, including a Felkin-selective trityl-catalyzed Mukaiyama aldol reaction, a chelate-controlled aldol reaction involving soft enolization with magnesium, and an anti-Felkin-selective boron-mediated oxygenated aldol reaction. Careful comparison of the spectroscopic data for the synthetic C3-C48 degradation fragment to that reported by the isolation group revealed a structural misassignment in the lactol region of the naturally derived degradation product. Ultimately, the data reported for the naturally derived aflastatin A C3-C48 degradation lactol (6a, R = H) were attributed to its derivative lactol trideuteriomethyl ether (6c, R = CD3). Additionally, the revised absolute configurations of six stereogenic centers (C8, C9, and C28-C31) were confirmed.

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