Interaction of egg-white glycoproteins and their oligosaccharides with the monomer and the hexamer of chicken liver lectin. A multivalent oligosaccharide-combining site exists within the carbohydrate-recognition domain

Author:

Piskarev V E1,Navrátil J2,Karásková H2,Bezouska K3,Kocourek J4

Affiliation:

1. Laboratory of Carbohydrate Chemistry, N.D. Zelinsky Institute of Organic Chemistry, Academy of Sciences of the U.S.S.R., Leninsky prosp. 47, Moscow V-334, U.S.S.R.

2. Research and Development Laboratory of Poultry Industry, Kozí 4, CS-l 10 00 Praha 1, Czechoslovakia.

3. Institute of Biotechnology, Charles University Prague, Albertov 2030, CS-12840 Praha 2, Czechoslovakia.

4. Department of Biochemistry, Charles University Prague, Albertov 2030, CS-12840 Praha 2, Czechoslovakia.

Abstract

Binding of egg-white glycoproteins and their oligosaccharides to hexameric solubilized form of the chicken hepatic lectin and the monomeric soluble fragment containing the carbohydrate-recognition domain has been investigated by several techniques. Ligand blotting revealed significant differences in binding to two forms of the lectin only for glycoproteins bearing multiple N-linked oligosaccharide moieties in their molecule (riboflavin-binding glycoprotein, avidin or ovomucoid). Inhibition studies indicated that inhibitory potency in a series of linear and branched N-acetyl-D-glucosamine-terminated oligosaccharides is critically dependent on the number and spatial arrangement of the terminal monosaccharide residues for both forms of the lectin. Direct binding of 4-hydroxyphenyl-derivatized radioiodinated oligosaccharides measured by equilibrium dialysis and frontal affinity chromatography points to the existence of two N-acetyl-D-glucosamine-combining sites per one subunit of the lectin, as has been recently reported for the rabbit and rat liver lectin [Lee & Lee (1988) Biochem. Biophys. Res. Commun. 155, 1444-1452]. Highly branch (penta-antennary) oligosaccharides interact with more than one subunit of the hexameric form of the lectin and thus resemble the more complex interaction of the whole glycoprotein.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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