Literature DB >> 8611585

Evaluation of isofagomine and its derivatives as potent glycosidase inhibitors.

W Dong1, T Jespersen, M Bols, T Skrydstrup, M R Sierks.   

Abstract

A pseudo-aza-monosaccharide and several pseudo-aza-disaccharide compounds were constructed based on replacement of the anomeric carbon with a nitrogen and the ring oxygen with a carbon. The inhibition constants of these compounds toward five different glycosidases, alpha-glucosidase, beta-glucosidase, isomaltase, alpha-mannosidase, and glucoamylase, were obtained. Isofagomine, the pseudo-aza-monosaccharide, shows a broad spectrum of strong inhibition against glycosidases. It is the most potent inhibitor of beta-glucosidase from sweet almonds reported to date and also a strong inhibitor of glucoamylase, isomaltase, and alpha-glucosidase. Isofagomine inhibits beta-glucosidase, glucoamylase, and isomaltase more strongly than 1-deoxynojirimycin where the ring oxygen has been replaced with a nitrogen. The alpha-1,6- linked pseudo-disaccharide showed very strong inhibition toward glucoamylase, being nearly as potent an inhibitor as acarbose. Pseudo-disaccharides in which the anomeric nitrogen was methylated to favor formation of either the alpha or beta substrate linkage generally had weakened inhibition for the glycosidases studied most likely due to steric interference with the various active sites. These results indicate that the presence of a basic group at the anomeric center is important for carbohydrase inhibition. The presence of a charged carboxylate group near the anomeric carbon which interacts with the basic nitrogen is suggested for these enzymes, particularly for beta-glucosidase. The presence of a second alpha-linked glucosyl residue is also critical for strong inhibition of glucoamylase.

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Year:  1996        PMID: 8611585     DOI: 10.1021/bi9522514

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  6 in total

1.  Selective action of the iminosugar isofagomine, a pharmacological chaperone for mutant forms of acid-beta-glucosidase.

Authors:  Richard Steet; Stephen Chung; Wang-Sik Lee; Corey W Pine; Hung Do; Stuart Kornfeld
Journal:  Biochem Pharmacol       Date:  2006-12-15       Impact factor: 5.858

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.  Constituents with α-glucosidase and advanced glycation end-product formation inhibitory activities from Salvia miltiorrhiza Bge.

Authors:  Hai-Ying Ma; Hui-Yuan Gao; Lu Sun; Jian Huang; Xiao-Min Xu; Li-Jun Wu
Journal:  J Nat Med       Date:  2010-09-11       Impact factor: 2.343

4.  Beta-glucosidase 1 (GBA1) is a second bile acid β-glucosidase in addition to β-glucosidase 2 (GBA2). Study in β-glucosidase deficient mice and humans.

Authors:  Klaus Harzer; Yotam Blech-Hermoni; Ehud Goldin; Ursula Felderhoff-Mueser; Claudia Igney; Ellen Sidransky; Yildiz Yildiz
Journal:  Biochem Biophys Res Commun       Date:  2012-05-30       Impact factor: 3.575

5.  New inhibitors of α-glucosidase in Salacia hainanensis Chun et How.

Authors:  Zheng-hong Guo; Jian Huang; Guo-sheng Wan; Xiao-ling Huo; Hui-yuan Gao
Journal:  J Nat Med       Date:  2013-01-30       Impact factor: 2.343

6.  Arylsulfonyl histamine derivatives as powerful and selective α-glucosidase inhibitors.

Authors:  M I Osella; M O Salazar; M D Gamarra; D M Moreno; F Lambertucci; D E Frances; R L E Furlan
Journal:  RSC Med Chem       Date:  2020-03-12
  6 in total

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