Diverse lectin-binding specificity of four ZP3 glycoprotein isoforms with a discrete isoelectric point in chicken egg coat

► ZP3 involved in egg–sperm binding were separated into four major isoforms by 2D-PAGE. ► ZP3 isoforms showed distinct binding profiles with PNA, WGA, PHA-E and RCA I lectins. ► We found for the first time that four major ZP3 isoforms possess distinct N-glycans. ► ZP1 and ZP3 differentially localize...

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Veröffentlicht in:Biochemical and biophysical research communications 2012-08, Vol.424 (3), p.586-592
Hauptverfasser: Okumura, Hiroki, Fukushima, Hideaki, Momoda, Masaki, Ima, Yurie, Matsuda, Tsukasa, Ujita, Minoru
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Sprache:eng
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Zusammenfassung:► ZP3 involved in egg–sperm binding were separated into four major isoforms by 2D-PAGE. ► ZP3 isoforms showed distinct binding profiles with PNA, WGA, PHA-E and RCA I lectins. ► We found for the first time that four major ZP3 isoforms possess distinct N-glycans. ► ZP1 and ZP3 differentially localized in egg coat with uniformly distributed glycans. The vertebrate egg coat corresponding to mammalian zona pellucida is a filamentous matrix composed of highly and heterogeneously glycosylated proteins designated ZP glycoproteins including ZP1 to 4, ZPD and ZPAX, and play important roles in species-specific egg–sperm interactions. Recent advance in structural biology of chicken ZP3 provided new insights into molecular mechanisms of the egg-coat function involving its carbohydrate moieties. In this study, chicken ZP3 was separated into four major and distinct isoforms with different pI in 2D-PAGE. To investigate the meanings of the ZP3 heterogeneity in egg–sperm interactions, we preliminary analyzed glycan diversity on the molecules by using lectin-staining assays. The four major ZP3 isoforms 4–7 (from acidic to basic) were recognized equally with PNA (Galβ1-3GalNAc), but the isoforms 5–7 were recognized dominantly with WGA ((β-GlcNAc)n, clustered Sia), PHA-E (bi- and triantennary N-glycan containing Galβ1-4GlcNAcβ1-2Manα1-6) and RCA I (terminal Galβ1-4GlcNAc), respectively. Despite such sugar chain diversity among the ZP3 isoforms, a partner in the egg coat, ZP1, showed specific binding to each isoform equally. Localization of ZP1 and ZP3 in the egg-coat matrix were also analyzed.
ISSN:0006-291X
1090-2104
DOI:10.1016/j.bbrc.2012.06.157