Gallagher J T, Morris A, Dexter T M
Biochem J. 1985 Oct 1;231(1):115-22. doi: 10.1042/bj2310115.
The carbohydrate-binding properties of wheat-germ agglutinin (WGA) have been studied by using glycopeptides isolated from the cell surfaces of a cultured murine myeloid cell line (416B). The glycopeptides were passed through affinity columns of lentil lectin (LCA), concanavalin A (Con A) and WGA arranged in series so that material reaching the WGA column had failed to bind to LCA or Con A. WGA-binding glycopeptides were step-eluted with 0.01 M, 0.1 M and 0.5 M-N-acetylglucosamine (GlcNAc), to yield weak (WGA-W), intermediate (WGA-I) and strong (WGA-S) affinity fractions. WGA-W and WGA-I contained 'N'- and 'O'-linked oligosaccharides bound to separate polypeptides. WGA-S consisted almost entirely of N-linked components. Our analytical work was concentrated mainly on the N-linked fractions. In these carbohydrates WGA affinity was directly proportional to molecular size but inversely related to N-acetylneuraminic acid content. The binding of the weak-affinity fraction was dependent on N-acetylneuraminic acid, but the intermediate- and strong-binding species interacted with the lectin by N-acetylneuraminic acid-independent mechanisms. N-linked glycopeptides in each WGA-binding class were almost totally degraded to monosaccharides by the concerted action of the exoglycosidases neuraminidase, beta-galactosidase and beta-N-acetylglucosaminidase. Treatment with endo-beta-galactosidase caused partial depolymerization, yielding some disaccharides but also a heterogeneous population of partially degraded components. These findings suggest that WGA binds with high affinity to internal GlcNAc residues in large oligosaccharides containing repeat sequences of Gal beta(1----4)GlcNAc beta(1----3) (i.e. polylactosamine-type glycans). N-Acetylneuraminic acid is involved only in low-affinity interactions with WGA. WGA therefore displays an intricate pattern of saccharide specificities that can be profitably utilized for structural analysis of complex carbohydrates.
通过使用从培养的小鼠骨髓细胞系(416B)细胞表面分离的糖肽,对麦胚凝集素(WGA)的碳水化合物结合特性进行了研究。糖肽依次通过扁豆凝集素(LCA)、伴刀豆球蛋白A(Con A)和WGA的亲和柱,这样到达WGA柱的物质未能与LCA或Con A结合。用0.01 M、0.1 M和0.5 M - N - 乙酰葡糖胺(GlcNAc)对结合WGA的糖肽进行分步洗脱,得到弱(WGA - W)、中(WGA - I)和强(WGA - S)亲和级分。WGA - W和WGA - I包含与不同多肽结合的“N” - 和“O” - 连接寡糖。WGA - S几乎完全由N - 连接成分组成。我们的分析工作主要集中在N - 连接级分上。在这些碳水化合物中,WGA亲和力与分子大小成正比,但与N - 乙酰神经氨酸含量成反比。弱亲和级分的结合依赖于N - 乙酰神经氨酸,但中亲和及强结合种类通过不依赖N - 乙酰神经氨酸的机制与凝集素相互作用。通过神经氨酸酶、β - 半乳糖苷酶和β - N - 乙酰葡糖胺糖苷酶的协同作用,每个WGA结合类别的N - 连接糖肽几乎完全降解为单糖。用内切β - 半乳糖苷酶处理导致部分解聚,产生一些二糖以及部分降解成分的异质群体。这些发现表明,WGA与含有Galβ(1----4)GlcNAcβ(1----3)重复序列的大寡糖中的内部GlcNAc残基具有高亲和力结合(即多乳糖胺型聚糖)。N - 乙酰神经氨酸仅参与与WGA的低亲和力相互作用。因此,WGA显示出复杂的糖特异性模式,可有效地用于复杂碳水化合物的结构分析。