A synthetic heparan sulfate pentasaccharide, exclusively containing L-iduronic acid, displays higher affinity for FGF-2 than its D-glucuronic acid-containing isomers

It has been suggested that the FGF-2 binding site on heparan sulfate chains is a trisulfated pentasaccharide containing three hexuronic acid units. The configuration at C-5 of two of them being undetermined, we have synthesized the four possible pentasaccharides, and have evaluated their FGF-2 bindi...

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Autores principales: Kovensky, J., Duchaussoy, P., Bono, F., Salmivirta, M., Sizun, P., Herbert, J.-M., Petitou, M., Sinaÿ, P.
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Acceso en línea:http://hdl.handle.net/20.500.12110/paper_09680896_v7_n8_p1567_Kovensky
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spelling todo:paper_09680896_v7_n8_p1567_Kovensky2023-10-03T15:55:20Z A synthetic heparan sulfate pentasaccharide, exclusively containing L-iduronic acid, displays higher affinity for FGF-2 than its D-glucuronic acid-containing isomers Kovensky, J. Duchaussoy, P. Bono, F. Salmivirta, M. Sizun, P. Herbert, J.-M. Petitou, M. Sinaÿ, P. Carbohydrates Glycosylation Growth factors Heparan sulfate fibroblast growth factor 2 heparan sulfate pentasaccharide aorta article binding affinity binding site chemical structure controlled study human human cell intestine synthesis Aorta Binding Sites Carbohydrate Sequence Cell Division Cells, Cultured Fibroblast Growth Factor 2 Glucuronic Acid Heparitin Sulfate Humans Iduronic Acid Isomerism Molecular Sequence Data Muscle, Smooth, Vascular Oligosaccharides It has been suggested that the FGF-2 binding site on heparan sulfate chains is a trisulfated pentasaccharide containing three hexuronic acid units. The configuration at C-5 of two of them being undetermined, we have synthesized the four possible pentasaccharides, and have evaluated their FGF-2 binding affinity through in vitro biological assays. The pentasaccharide containing L-iduronic acid as the sole hexuronic acid showed higher affinity for FGF-2 than the other pentasaccharides, where one hexuronic acid unit at least is D-glucuronic acid. Copyright (C) 1999. Fil:Kovensky, J. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. JOUR info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by/2.5/ar http://hdl.handle.net/20.500.12110/paper_09680896_v7_n8_p1567_Kovensky
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
topic Carbohydrates
Glycosylation
Growth factors
Heparan sulfate
fibroblast growth factor 2
heparan sulfate
pentasaccharide
aorta
article
binding affinity
binding site
chemical structure
controlled study
human
human cell
intestine
synthesis
Aorta
Binding Sites
Carbohydrate Sequence
Cell Division
Cells, Cultured
Fibroblast Growth Factor 2
Glucuronic Acid
Heparitin Sulfate
Humans
Iduronic Acid
Isomerism
Molecular Sequence Data
Muscle, Smooth, Vascular
Oligosaccharides
spellingShingle Carbohydrates
Glycosylation
Growth factors
Heparan sulfate
fibroblast growth factor 2
heparan sulfate
pentasaccharide
aorta
article
binding affinity
binding site
chemical structure
controlled study
human
human cell
intestine
synthesis
Aorta
Binding Sites
Carbohydrate Sequence
Cell Division
Cells, Cultured
Fibroblast Growth Factor 2
Glucuronic Acid
Heparitin Sulfate
Humans
Iduronic Acid
Isomerism
Molecular Sequence Data
Muscle, Smooth, Vascular
Oligosaccharides
Kovensky, J.
Duchaussoy, P.
Bono, F.
Salmivirta, M.
Sizun, P.
Herbert, J.-M.
Petitou, M.
Sinaÿ, P.
A synthetic heparan sulfate pentasaccharide, exclusively containing L-iduronic acid, displays higher affinity for FGF-2 than its D-glucuronic acid-containing isomers
topic_facet Carbohydrates
Glycosylation
Growth factors
Heparan sulfate
fibroblast growth factor 2
heparan sulfate
pentasaccharide
aorta
article
binding affinity
binding site
chemical structure
controlled study
human
human cell
intestine
synthesis
Aorta
Binding Sites
Carbohydrate Sequence
Cell Division
Cells, Cultured
Fibroblast Growth Factor 2
Glucuronic Acid
Heparitin Sulfate
Humans
Iduronic Acid
Isomerism
Molecular Sequence Data
Muscle, Smooth, Vascular
Oligosaccharides
description It has been suggested that the FGF-2 binding site on heparan sulfate chains is a trisulfated pentasaccharide containing three hexuronic acid units. The configuration at C-5 of two of them being undetermined, we have synthesized the four possible pentasaccharides, and have evaluated their FGF-2 binding affinity through in vitro biological assays. The pentasaccharide containing L-iduronic acid as the sole hexuronic acid showed higher affinity for FGF-2 than the other pentasaccharides, where one hexuronic acid unit at least is D-glucuronic acid. Copyright (C) 1999.
format JOUR
author Kovensky, J.
Duchaussoy, P.
Bono, F.
Salmivirta, M.
Sizun, P.
Herbert, J.-M.
Petitou, M.
Sinaÿ, P.
author_facet Kovensky, J.
Duchaussoy, P.
Bono, F.
Salmivirta, M.
Sizun, P.
Herbert, J.-M.
Petitou, M.
Sinaÿ, P.
author_sort Kovensky, J.
title A synthetic heparan sulfate pentasaccharide, exclusively containing L-iduronic acid, displays higher affinity for FGF-2 than its D-glucuronic acid-containing isomers
title_short A synthetic heparan sulfate pentasaccharide, exclusively containing L-iduronic acid, displays higher affinity for FGF-2 than its D-glucuronic acid-containing isomers
title_full A synthetic heparan sulfate pentasaccharide, exclusively containing L-iduronic acid, displays higher affinity for FGF-2 than its D-glucuronic acid-containing isomers
title_fullStr A synthetic heparan sulfate pentasaccharide, exclusively containing L-iduronic acid, displays higher affinity for FGF-2 than its D-glucuronic acid-containing isomers
title_full_unstemmed A synthetic heparan sulfate pentasaccharide, exclusively containing L-iduronic acid, displays higher affinity for FGF-2 than its D-glucuronic acid-containing isomers
title_sort synthetic heparan sulfate pentasaccharide, exclusively containing l-iduronic acid, displays higher affinity for fgf-2 than its d-glucuronic acid-containing isomers
url http://hdl.handle.net/20.500.12110/paper_09680896_v7_n8_p1567_Kovensky
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