Gluco-1 H-imidazole:A New Class of Azole-Type β-Glucosidase Inhibitor

Gluco-azoles competitively inhibit glucosidases by transition-state mimicry and their ability to interact with catalytic acid residues in glucosidase active sites. We noted that no azole-type inhibitors described, to date, possess a protic nitrogen characteristic for 1 H-imidazoles. Here, we present...

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Hauptverfasser: Schröder, Sybrin P, Wu, Liang, Artola, Marta, Hansen, Thomas, Offen, Wendy A, Ferraz, Maria J, Li, Kah-Yee, Aerts, Johannes M F G, Van Der Marel, Gijsbert A, Codée, Jeroen D C, Davies, Gideon J, Overkleeft, Herman S
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Sprache:eng
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Zusammenfassung:Gluco-azoles competitively inhibit glucosidases by transition-state mimicry and their ability to interact with catalytic acid residues in glucosidase active sites. We noted that no azole-type inhibitors described, to date, possess a protic nitrogen characteristic for 1 H-imidazoles. Here, we present gluco-1 H-imidazole, a gluco-azole bearing a 1 H-imidazole fused to a glucopyranose-configured cyclitol core, and three close analogues as new glucosidase inhibitors. All compounds inhibit human retaining β-glucosidase, GBA1, with the most potent ones inhibiting this enzyme (deficient in Gaucher disease) on a par with glucoimidazole. None inhibit glucosylceramide synthase, cytosolic β-glucosidase GBA2 or α-glucosidase GAA. Structural, physical and computational studies provide first insights into the binding mode of this conceptually new class of retaining β-glucosidase inhibitors.
DOI:10.1021/jacs.8b02399