Issue 3, 2022

Structural variation of the 3-acetamido-4,5,6-trihydroxyazepane iminosugar through epimerization and C-alkylation leads to low micromolar HexAB and NagZ inhibitors

Abstract

We report the synthesis of seven-membered iminosugars derived from a 3S-acetamido-4R,5R,6S-trihydroxyazepane scaffold and their evaluation as inhibitors of functionally related exo-N-acetylhexosaminidases including human O-GlcNAcase (OGA), human lysosomal β-hexosaminidase (HexAB), and Escherichia coli NagZ. Capitalizing on the flexibility of azepanes and the active site tolerances of hexosaminidases, we explore the effects of epimerization of stereocenters at C-3, C-5 and C-6 and C-alkylation at the C-2 or C-7 positions. Accordingly, epimerization at C-6 (L-ido) and at C-5 (D-galacto) led to selective HexAB inhibitors whereas introduction of a propyl group at C-7 on the C-3 epimer furnished a potent NagZ inhibitor.

Graphical abstract: Structural variation of the 3-acetamido-4,5,6-trihydroxyazepane iminosugar through epimerization and C-alkylation leads to low micromolar HexAB and NagZ inhibitors

Supplementary files

Article information

Article type
Paper
Submitted
20 Nov 2021
Accepted
14 Dec 2021
First published
17 Dec 2021

Org. Biomol. Chem., 2022,20, 619-629

Structural variation of the 3-acetamido-4,5,6-trihydroxyazepane iminosugar through epimerization and C-alkylation leads to low micromolar HexAB and NagZ inhibitors

J. Bouquet, N. Auberger, R. Ashmus, D. King, A. Bordes, N. Fontelle, S. Nakagawa, Z. Madden, C. Proceviat, A. Kato, J. Désiré, D. J. Vocadlo and Y. Blériot, Org. Biomol. Chem., 2022, 20, 619 DOI: 10.1039/D1OB02280F

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