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糖蛋白凝集素的糖基化。N-连接寡糖表达的属内和属间变异。

The glycosylation of glycoprotein lectins. Intra- and inter-genus variation in N-linked oligosaccharide expression.

作者信息

Ashford D A, Dwek R A, Rademacher T W, Lis H, Sharon N

机构信息

Department of Biochemistry, University of Oxford, Great Britain.

出版信息

Carbohydr Res. 1991 Jun 25;213:215-27. doi: 10.1016/s0008-6215(00)90610-4.

Abstract

Glycosylated lectins represent a series of glycoproteins with related activities and, in the case of the Leguminosae, related amino acid sequences. Therefore, they offer a model system in which to study the diversity of N-linked oligosaccharide structures of plant glycoproteins. The influence of the polypeptide on the type of oligosaccharide substitution and the problem of inter- and intra-genus variation in glycosylation can also be addressed. Analysis of the glycosylation of 18 lectins has shown that they can be classified into four qualitatively similar groups on the basis of the Bio-Gel P-4 elution profiles of the oligosaccharides released by hydrazinolysis: (a) The Erythrina cristagalli profile, with a major component at 8.8 glucose units (gu) and minor components at 8.0, 7.2, and 5.8 gu. The major component is the heptasaccharide, alpha-D-Manp-(1----3)-[alpha-D-Manp-(1----6)]-[beta-D-Xyl p-(1----2)]- beta-D-Manp-beta-D-GlcpNAc-(1----4)-[alpha-L-Fucp-(1----3)]- D-GlcNAc. (b) The Phaseolus vulgaris profile, which was characterized by peaks at 12.5, 11.7, 10.8, and 9.9 gu, in addition to the peaks at 8.8, 8.0, 7.2, and 5.8 gu mentioned above. These higher-mol.-wt. components were oligo-D-mannose oligosaccharides containing 9, 8, 7, and 6 D-mannose residues, respectively. (c) The Lonchocarpas capassa profile, which had a major peak at approximately 8 gu. (d) The soybean agglutinin profile, which has a single peak at 12.5 gu. This peak consisted solely of an oligomannose undecasaccharide containing 9 D-mannose residues. This lectin is unique in that it shows no microheterogeneity.

摘要

糖基化凝集素是一系列具有相关活性的糖蛋白,就豆科植物而言,它们还具有相关的氨基酸序列。因此,它们提供了一个模型系统,可用于研究植物糖蛋白N-连接寡糖结构的多样性。多肽对寡糖取代类型的影响以及糖基化过程中属间和属内变异的问题也可以得到解决。对18种凝集素糖基化的分析表明,根据肼解释放的寡糖在Bio-Gel P-4上的洗脱图谱,它们可分为四个性质相似的组:(a) 刺桐属凝集素图谱,主要成分在8.8个葡萄糖单位(gu)处,次要成分在8.0、7.2和5.8 gu处。主要成分是七糖,α-D-甘露糖基-(1→3)-[α-D-甘露糖基-(1→6)]-[β-D-木糖基-(1→2)]-β-D-甘露糖基-β-D-葡萄糖胺基-(1→4)-[α-L-岩藻糖基-(1→3)]-D-葡萄糖胺。(b) 菜豆属凝集素图谱,除上述8.8、8.0、7.2和5.8 gu处的峰外,其特征在于在12.5、11.7、10.8和9.9 gu处有峰。这些较高分子量的成分分别是含有9、8、7和6个D-甘露糖残基的寡聚D-甘露糖寡糖。(c) 卡帕刺桐属凝集素图谱,在约8 gu处有一个主峰。(d) 大豆凝集素图谱,在12.5 gu处有一个单峰。该峰仅由含有9个D-甘露糖残基的寡聚甘露糖十一糖组成。这种凝集素的独特之处在于它没有微异质性。

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