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  2. Molecular Basis for Inhibition of Heparanases and β-Glucuronidases by Siastatin B

Molecular Basis for Inhibition of Heparanases and β-Glucuronidases by Siastatin B

  • J Am Chem Soc. 2024 Jan 10;146(1):125-133. doi: 10.1021/jacs.3c04162.
Yurong Chen 1 Adrianus M C H van den Nieuwendijk 1 Liang Wu 2 Elisha Moran 2 Foteini Skoulikopoulou 1 Vera van Riet 1 Hermen S Overkleeft 1 Gideon J Davies 2 Zachary Armstrong 1 2
Affiliations

Affiliations

  • 1 Leiden Institute of Chemistry, Leiden University, Einsteinweg 55, 2300 RA Leiden, The Netherlands.
  • 2 York Structural Biology Laboratory, Department of Chemistry, The University of York, YO10 5DD York, U.K.
Abstract

Siastatin B is a potent and effective iminosugar inhibitor of three diverse glycosidase classes, namely, sialidases, β-d-glucuronidases, and N-acetyl-glucosaminidases. The mode of inhibition of glucuronidases, in contrast to sialidases, has long been enigmatic as siastatin B appears too bulky and incorrectly substituted to be accommodated within a β-d-glucuronidase active site pocket. Herein, we show through crystallographic analysis of protein-inhibitor complexes that siastatin B generates both a hemiaminal and a 3-geminal diol iminosugar (3-GDI) that are, rather than the parent compound, directly responsible for Enzyme inhibition. The hemiaminal product is the first observation of a natural product that belongs to the noeuromycin class of inhibitors. Additionally, the 3-GDI represents a new and potent class of the iminosugar glycosidase inhibitor. To substantiate our findings, we synthesized both the gluco- and galacto-configured 3-GDIs and characterized their binding both structurally and kinetically to exo-β-d-glucuronidases and the Anticancer target human heparanase. This revealed submicromolar inhibition of exo-β-d-glucuronidases and an unprecedented binding mode by this new class of inhibitor. Our results reveal the mechanism by which siastatin B acts as a broad-spectrum glycosidase inhibitor, identify a new class of glycosidase inhibitor, and suggest new functionalities that can be incorporated into future generations of glycosidase inhibitors.

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