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Sugar Chips immobilized with synthetic sulfated disaccharides of heparin/heparan sulfate partial structure.


ABSTRACT: Carbohydrate chip technology has a great potential for the high-throughput evaluation of carbohydrate-protein interactions. Herein, we report syntheses of novel sulfated oligosaccharides possessing heparin and heparan sulfate partial disaccharide structures, their immobilization on gold-coated chips to prepare array-type Sugar Chips, and evaluation of binding potencies of proteins by surface plasmon resonance (SPR) imaging technology. Sulfated oligosaccharides were efficiently synthesized from glucosamine and uronic acid moieties. Synthesized sulfated oligosaccharides were then easily immobilized on gold-coated chips using previously reported methods. The effectiveness of this analytical method was confirmed in binding experiments between the chips and heparin binding proteins, fibronectin and recombinant human von Willebrand factor A1 domain (rh-vWf-A1), where specific partial structures of heparin or heparan sulfate responsible for binding were identified.

SUBMITTER: Wakao M 

PROVIDER: S-EPMC2423310 | biostudies-literature | 2008 Apr

REPOSITORIES: biostudies-literature

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Sugar Chips immobilized with synthetic sulfated disaccharides of heparin/heparan sulfate partial structure.

Wakao Masahiro M   Saito Akihiro A   Ohishi Koh K   Kishimoto Yuko Y   Nishimura Tomoaki T   Sobel Michael M   Suda Yasuo Y  

Bioorganic & medicinal chemistry letters 20080119 7


Carbohydrate chip technology has a great potential for the high-throughput evaluation of carbohydrate-protein interactions. Herein, we report syntheses of novel sulfated oligosaccharides possessing heparin and heparan sulfate partial disaccharide structures, their immobilization on gold-coated chips to prepare array-type Sugar Chips, and evaluation of binding potencies of proteins by surface plasmon resonance (SPR) imaging technology. Sulfated oligosaccharides were efficiently synthesized from g  ...[more]

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