Literature DB >> 11522797

Biochemical and structural assessment of the 1-N-azasugar GalNAc-isofagomine as a potent family 20 beta-N-acetylhexosaminidase inhibitor.

B L Mark1, D J Vocadlo, D Zhao, S Knapp, S G Withers, M N James.   

Abstract

Azasugar inhibitors of the isofagomine class are potent competitive inhibitors of configuration-retaining beta-glycosidases. This potency results from the formation of a strong electrostatic interaction between a protonated endocyclic nitrogen at the "anomeric" center of the inhibitor and the catalytic nucleophile of the enzyme. Although the majority of retaining beta-glycosidases use a mechanism involving a carboxylate residue as a nucleophile, Streptomyces plicatus beta-N-acetylhexos-aminidase (SpHEX) and related family 20 glycosidases lack such a catalytic residue and use instead the carbonyl oxygen of the 2-acetamido group of the substrate as a nucleophile to "attack" the anomeric center. Thus, a strong electrostatic interaction between the inhibitor and enzyme is not expected to occur; nonetheless, the 1-N-azasugar (2R,3R,4S,5R)-2-acetamido-3,4-dihydroxy-5-hydroxymethyl-piperidinium hydrochloride (GalNAc-isofagomine.HCl), which was synthesized and assayed for its ability to inhibit SpHEX, was found to be a potent competitive inhibitor of the enzyme (K(i) = 2.7 microm). A crystallographic complex of GalNAc-isofagomine bound to SpHEX was solved and refined to 1.75 A and revealed that the lack of a strong electrostatic interaction between the "anomeric" center of GalNAc-isofagomine and SpHEX is compensated for by a novel 2.8-A hydrogen bond formed between the equatorial proton of the endocyclic nitrogen of the azasugar ring and the carboxylate of the general acid-base residue Glu-314 of SpHEX. This interaction appears to contribute to the unexpected potency of GalNAc-isofagomine toward SpHEX.

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Year:  2001        PMID: 11522797     DOI: 10.1074/jbc.M107154200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  10 in total

1.  Crystallization and diffraction analysis of β-N-acetylhexosaminidase from Aspergillus oryzae.

Authors:  Ondřej Vaněk; Jiří Brynda; Kateřina Hofbauerová; Zdeněk Kukačka; Petr Pachl; Karel Bezouška; Pavlína Rezáčová
Journal:  Acta Crystallogr Sect F Struct Biol Cryst Commun       Date:  2011-03-26

2.  Alpha-retaining glucosyl transfer catalysed by trehalose phosphorylase from Schizophyllum commune: mechanistic evidence obtained from steady-state kinetic studies with substrate analogues and inhibitors.

Authors:  B Nidetzky; C Eis
Journal:  Biochem J       Date:  2001-12-15       Impact factor: 3.857

3.  Crystal structure of human beta-hexosaminidase B: understanding the molecular basis of Sandhoff and Tay-Sachs disease.

Authors:  Brian L Mark; Don J Mahuran; Maia M Cherney; Dalian Zhao; Spencer Knapp; Michael N G James
Journal:  J Mol Biol       Date:  2003-04-11       Impact factor: 5.469

4.  2-Acetamino-1,2-dideoxynojirimycin-lysine hybrids as hexosaminidase inhibitors.

Authors:  Andreas J Steiner; Georg Schitter; Arnold E Stütz; Tanja M Wrodnigg; Chris A Tarling; Stephen G Withers; Don J Mahuran; Michael B Tropak
Journal:  Tetrahedron Asymmetry       Date:  2009-05-01

5.  Crystal structures of a glycoside hydrolase family 20 lacto-N-biosidase from Bifidobacterium bifidum.

Authors:  Tasuku Ito; Takane Katayama; Mitchell Hattie; Haruko Sakurama; Jun Wada; Ryuichiro Suzuki; Hisashi Ashida; Takayoshi Wakagi; Kenji Yamamoto; Keith A Stubbs; Shinya Fushinobu
Journal:  J Biol Chem       Date:  2013-03-11       Impact factor: 5.157

6.  Structural insights into the mechanism and inhibition of eukaryotic O-GlcNAc hydrolysis.

Authors:  Francesco V Rao; Helge C Dorfmueller; Fabrizio Villa; Matthew Allwood; Ian M Eggleston; Daan M F van Aalten
Journal:  EMBO J       Date:  2006-03-16       Impact factor: 11.598

7.  Structural-Functional Analysis Reveals a Specific Domain Organization in Family GH20 Hexosaminidases.

Authors:  Cristina Val-Cid; Xevi Biarnés; Magda Faijes; Antoni Planas
Journal:  PLoS One       Date:  2015-05-29       Impact factor: 3.240

8.  Computational study of β-N-acetylhexosaminidase from Talaromyces flavus, a glycosidase with high substrate flexibility.

Authors:  Natallia Kulik; Kristýna Slámová; Rüdiger Ettrich; Vladimír Křen
Journal:  BMC Bioinformatics       Date:  2015-01-28       Impact factor: 3.169

9.  GlcNAcstatins are nanomolar inhibitors of human O-GlcNAcase inducing cellular hyper-O-GlcNAcylation.

Authors:  Helge C Dorfmueller; Vladimir S Borodkin; Marianne Schimpl; Daan M F van Aalten
Journal:  Biochem J       Date:  2009-05-13       Impact factor: 3.857

10.  Structure of the dimeric N-glycosylated form of fungal beta-N-acetylhexosaminidase revealed by computer modeling, vibrational spectroscopy, and biochemical studies.

Authors:  Rüdiger Ettrich; Vladimír Kopecký; Katerina Hofbauerová; Vladimír Baumruk; Petr Novák; Petr Pompach; Petr Man; Ondrej Plíhal; Michal Kutý; Natallia Kulik; Jan Sklenár; Helena Ryslavá; Vladimír Kren; Karel Bezouska
Journal:  BMC Struct Biol       Date:  2007-05-17
  10 in total

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