1. Academic Validation
  2. Skeletal rearrangement of seven-membered iminosugars: synthesis of (-)-adenophorine, (-)-1-epi-adenophorine and derivatives and evaluation as glycosidase inhibitors

Skeletal rearrangement of seven-membered iminosugars: synthesis of (-)-adenophorine, (-)-1-epi-adenophorine and derivatives and evaluation as glycosidase inhibitors

  • Bioorg Med Chem. 2013 Aug 15;21(16):4803-12. doi: 10.1016/j.bmc.2013.03.035.
Martine Mondon 1 Frédéric Lecornué Jérôme Guillard Shinpei Nakagawa Atsushi Kato Yves Blériot
Affiliations

Affiliation

  • 1 Université de Poitiers, Equipe Synthèse Organique, Groupe Glycochimie, UMR-CNRS 7285, IC2MP, 4 rue Michel Brunet, 86022 Poitiers, France.
Abstract

The mirror image of natural product (+)-adenophorine along with its 1-epi-, 1-homo-analogs and Other derivatives have been synthesized and evaluated as Glycosidase inhibitors. The synthetic strategy is based on the skeletal rearrangement of tetrahydroxylated C-alkyl azepanes obtained via a Staudinger/azaWittig/alkylation sequence starting from a sugar-derived azidolactol. Several organometallic species have been investigated for the alkylation step including organomagnesium, organolithium, organozinc, organoaluminum and organocerium reagents. While diallylzinc proved to be the most efficient to introduce an allyl substituent, disappointing results were obtained with the Other organometallic species leading either to lower yields or no reaction. Enzymatic assays indicate that (-)-adenophorine is a moderate α-l-fucosidase inhibitor.

Keywords

Adenophorine; Azepane; Glycosidase inhibition; Iminosugar; Natural product.

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