Literature DB >> 16311889

Biological evaluation of a series of 2-acetamido-2-deoxy-D-glucose analogs towards cellular glycosaminoglycan and protein synthesis in vitro.

Ali Berkin1, Walter A Szarek, Robert Kisilevsky.   

Abstract

Using primary hepatocytes in culture, various 2-acetamido-2-deoxy-D-glucose (GlcNAc) analogs were examined for their effects on the incorporation of D-[3H]glucosamine, [35S]sulfate, and L-[14C]leucine into cellular glycoconjugates. A series of acetylated GlcNAc analogs, namely methyl 2-acetamido-3,4,6-tri-O-acetyl-2-deoxy-alpha-(3) and beta-D-glucopyranoside (4) and 2-acetamido-1,3,4,6-tetra-O-acetyl-2-deoxy-D-glucopyranose (5), exhibited a concentration-dependent reduction of D-[3H]glucosamine, but not of [35S]sulfate incorporation into isolated glycosaminoglycans (GAGs), without affecting L-[14C]leucine incorporation into total protein synthesis. These results suggest that analogs 3-5 exhibit an inhibitory effect on D-[3H]glucosamine incorporation into isolated GAGs by diluting the specific activity of cellular D-[3H]glucosamine and by competing for the same metabolic pathways. In the case of the corresponding series of 4-deoxy-GlcNAc analogs, namely methyl 2-acetamido-3,6-di-O-acetyl-2,4-dideoxy-alpha-(6) and beta-D-xylo-hexopyranoside (7) and 2-acetamido-1,3,6-tri-O-acetyl-2,4-dideoxy-D-xylo-hexopyranose (8), compound 8 at 1.0 mM exhibited the greatest reduction of D-[3H]glucosamine and [35S]sulfate incorporation into isolated GAGs, namely to approximately 7% of controls, and a moderate inhibition of total protein synthesis, namely to 60% of controls. Exogenous uridine was able to restore the inhibition of total protein synthesis by compound 8 at 1.0 mM. Isolated GAGs from cultures treated with compound 8 were shown to be smaller in size (approximately 40 kDa) than for control cultures (approximately 77 kDa). These results suggest that the inhibitory effects of compound 8 on cellular GAG synthesis may be mediated by the incorporation of a 4-deoxy moiety into GAGs resulting in premature chain termination and/or by its serving as an enzymatic inhibitor of the normal sugar metabolites. The inhibition of total protein synthesis from cultures treated with compound 8 suggests a uridine trapping mechanism which would result in the depletion of UTP pools and cause the inhibition of total protein synthesis. A 1-deoxy-GlcNAc analog, namely 2-acetamido-3,4,6-tri-O-acetyl-1,5-anhydro-2-deoxy-D-glucitol (9), also exhibited a reduction in both D-[3H]glucosamine and [35S]sulfate incorporation into isolated GAGs by 19 and 57%, of the control cells, respectively, at 1.0 mM without affecting total protein synthesis. The inability of compound 9 to form a UDP-sugar and, hence, be incorporated into GAGs presents another metabolic route for the inhibition of cellular GAG synthesis. Potential metabolic routes for each analog's effects are presented.

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Year:  2005        PMID: 16311889     DOI: 10.1007/s10719-005-5060-1

Source DB:  PubMed          Journal:  Glycoconj J        ISSN: 0282-0080            Impact factor:   3.009


  43 in total

1.  Synthesis of 4-deoxy analogues of 2-acetamido-2-deoxy-D-glucose and 2-acetamido-2-deoxy-D-xylose and their effects on glycoconjugate biosynthesis.

Authors:  A Berkin; M A Szarek; J Plenkiewicz; W A Szarek; R Kisilevsky
Journal:  Carbohydr Res       Date:  2000-03-24       Impact factor: 2.104

2.  Binding of heparan sulfate to type V collagen. A mechanism of cell-substrate adhesion.

Authors:  R G LeBaron; A Höök; J D Esko; S Gay; M Höök
Journal:  J Biol Chem       Date:  1989-05-15       Impact factor: 5.157

Review 3.  Cell-surface glycosaminoglycans.

Authors:  M Höök; L Kjellén; S Johansson
Journal:  Annu Rev Biochem       Date:  1984       Impact factor: 23.643

4.  Structural requirements for glycosaminoglycan recognition by the Lyme disease spirochete, Borrelia burgdorferi.

Authors:  J M Leong; D Robbins; L Rosenfeld; B Lahiri; N Parveen
Journal:  Infect Immun       Date:  1998-12       Impact factor: 3.441

5.  Tumor formation dependent on proteoglycan biosynthesis.

Authors:  J D Esko; K S Rostand; J L Weinke
Journal:  Science       Date:  1988-08-26       Impact factor: 47.728

6.  Influence of monosaccharide derivatives on liver cell glycosaminoglycan synthesis: 3-deoxy-D-xylo-hexose (3-deoxy-D-galactose) and methyl (methyl 4-chloro-4-deoxy-beta-D-galactopyranosid) uronate.

Authors:  S S Thomas; J Plenkiewicz; E R Ison; M Bols; W Zou; W A Szarek; R Kisilevsky
Journal:  Biochim Biophys Acta       Date:  1995-08-15

7.  Fluorinated carbohydrates as potential plasma membrane modifiers. Synthesis of 4- and 6-fluoro derivatives of 2-acetamido-2-deoxy-D-hexopyranoses.

Authors:  M Sharma; R J Bernacki; B Paul; W Korytnyk
Journal:  Carbohydr Res       Date:  1990-05-01       Impact factor: 2.104

8.  Reduced sulfation of liver heparan sulfate in experimentally diabetic rats.

Authors:  L Kjellén; D Bielefeld; M Hook
Journal:  Diabetes       Date:  1983-04       Impact factor: 9.461

9.  Structure of heparan sulphate from human brain, with special regard to Alzheimer's disease.

Authors:  B Lindahl; L Eriksson; U Lindahl
Journal:  Biochem J       Date:  1995-02-15       Impact factor: 3.857

10.  Identification of Plasmodium falciparum erythrocyte membrane protein 1 (PfEMP1) as the rosetting ligand of the malaria parasite P. falciparum.

Authors:  Q Chen; A Barragan; V Fernandez; A Sundström; M Schlichtherle; A Sahlén; J Carlson; S Datta; M Wahlgren
Journal:  J Exp Med       Date:  1998-01-05       Impact factor: 14.307

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  1 in total

1.  Inhibition of heparan sulfate and chondroitin sulfate proteoglycan biosynthesis.

Authors:  Dinesh R Garud; Vy M Tran; Xylophone V Victor; Mamoru Koketsu; Balagurunathan Kuberan
Journal:  J Biol Chem       Date:  2008-08-14       Impact factor: 5.157

  1 in total

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