Galectin-10: a new structural type of prototype galectin dimer and effects on saccharide ligand binding

Abstract Galectin-10 (Gal-10) which forms Charcot-Leyden crystals in vivo, is crucial to regulating lymph cell function. Here, we solved the crystal structures of Gal-10 and eight variants at resolutions of 1.55–2.00 Å. Structural analysis and size exclusion chromatography demonstrated that Gal-10 d...

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Veröffentlicht in:Glycobiology (Oxford) 2018-03, Vol.28 (3), p.159-168
Hauptverfasser: Su, Jiyong, Gao, Jin, Si, Yunlong, Cui, Linlin, Song, Chenyang, Wang, Yue, Wu, Runjie, Tai, Guihua, Zhou, Yifa
Format: Artikel
Sprache:eng
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Zusammenfassung:Abstract Galectin-10 (Gal-10) which forms Charcot-Leyden crystals in vivo, is crucial to regulating lymph cell function. Here, we solved the crystal structures of Gal-10 and eight variants at resolutions of 1.55–2.00 Å. Structural analysis and size exclusion chromatography demonstrated that Gal-10 dimerizes with a novel global shape that is different from that of other prototype galectins (e.g., Gal-1, -2 and -7). In the Gal-10 dimer, Glu33 from one subunit modifies the carbohydrate-binding site of another, essentially inhibiting disaccharide binding. Nevertheless, glycerol (and possibly other small hydroxylated molecules) can interact with residues at the ligand binding site, with His53 being the most crucial for binding. Alanine substitution of the conserved Trp residue (Trp72) that is crucial to saccharide binding in other galectins, actually leads to enhanced erythrocyte agglutination, suggesting that Trp72 negatively regulates Gal-10 ligand binding. Overall, our crystallographic and biochemical results provide insight into Gal-10 ligand binding specificity.
ISSN:0959-6658
1460-2423
DOI:10.1093/glycob/cwx107