The 2.2 Å resolution structure of the O(H) blood-group-specific lectin I from Ulex europaeus
The tertiary and quaternary structure of the lectin I from Ulex europaeus (UE-I) has been determined to 2.2 Å resolution. UE-I is a dimeric metalloglycoprotein that binds the H-type 2 human blood group determinant [α- l-Fucα(1 → 2)-β- d-Galβ(1 → 4)-β- d-GlcNAcα-]. Nine changes from the published ami...
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Veröffentlicht in: | Journal of molecular biology 2000-12, Vol.304 (3), p.423-433 |
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Sprache: | eng |
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Zusammenfassung: | The tertiary and quaternary structure of the lectin I from
Ulex europaeus (UE-I) has been determined to 2.2 Å resolution. UE-I is a dimeric metalloglycoprotein that binds the H-type 2 human blood group determinant [α-
l-Fucα(1 → 2)-β-
d-Galβ(1 → 4)-β-
d-GlcNAcα-]. Nine changes from the published amino acid sequence were necessary to account for the electron density. The quaternary structural organization of UE-I is that of the most commonly occurring legume lectin dimer. The tertiary structure of the monomeric subunits is similar to that in the conventional lectin subunit; however, some structural differences are noted. These differences include a four-stranded anti-parallel “S” sheet in UE-I
versus the five-stranded S sheet in other lectin monomers. The Ala residue of the Ala-Asp
cis-peptide bond present in the carbohydrate-binding site of the conventional lectin monomer is replaced with a Thr in the UE-I structure. Also, a novel disulfide bridge linking Cys115 and Cys150 is present. There are two metallic ions, one calcium and the other manganese, per subunit.
N-linked oligosaccharides are at residues 23 and 111 of each subunit. One molecule of R-2-methyl-2,4-pentanediol (R-MPD) is present in a shallow depression on the surface of each subunit. In order to examine the binding of the H-type 2 blood group determinant by UE-I, its β-methyl glycoside (H-type 2-OMe) was docked into the binding site of R-MPD. The epitope previously identified for H-type 2-OMe by chemical mapping proved, with only minor adjustment of amino acid residues, to be complementary to the shallow cavity occupied by R-MPD in the structure. Several key interactions have been proposed between the H-type 2-OMe and UE-I. |
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ISSN: | 0022-2836 1089-8638 |
DOI: | 10.1006/jmbi.2000.4214 |