Tsuji T, Irimura T, Osawa T
Biochem J. 1980 Jun 1;187(3):677-86. doi: 10.1042/bj1870677.
Band-3 glycoprotein was purified from human blood-group-A erythrocyte membranes by selective solubilization and gel chromatography on Sepharose 6B in the presence of sodium dodecyl sulphate. The purified glycoprotein was subjected to hydrazinolysis in order to release the carbohydrate moiety. The released oligosaccharides were N-acetylated and applied to a column of DEAE-cellulose. Most of the band-3 oligosaccharides obtained were found to be free of sialic acids. When this neutral fraction was subjected to gel chromatography on a column of Sephadex G-50, two broad peaks were observed indicating that the band-3 glycoprotein was heterogeneous in the size of the oligosaccharide moieties. All fractions from gel chromatography were found to contain galactose, mannose, N-acetylglucosamine and fucose. The higher-molecular-weight (mol.wt. 3000-8000) peak consisted of fucose, mannose, galactose, N-acetylglucosamine and N-acetylgalactosamine in a molar proportion of 1.6:3.0:8.4:10.5:0.2. Most of these oligosaccharides were digested with a mixture of beta-galactosidase and beta-N-acetylhexosaminidase after alpha-L-fucosidase treatment to give a small oligosaccharide with the structure alpha Man2-beta Man-beta GlcNAc-GlcNAc. Methylation studies and limited degradation by nitrous acid deamination showed that the oligosaccharides contained the repeating disaccharide Gal beta 1----4GlcNAc beta 1----3, with branching points at C-6 of some of the galactose residues. These results indicate that a major portion of the band-3 oligosaccharide has a common core structure, with heterogeneity in the numbers of the repeating disaccharides, and contains fucose residues both in the peripheral portion and in the core portion. Haemagglutination tests were also carried out to determine the blood-group specificities of the glycoprotein and the results demonstrated the presence of both blood-group-H and I antigenic activities.
通过在十二烷基硫酸钠存在下进行选择性增溶和在琼脂糖6B上进行凝胶色谱法,从人A血型红细胞膜中纯化带3糖蛋白。对纯化的糖蛋白进行肼解以释放碳水化合物部分。将释放的寡糖进行N-乙酰化,然后应用于DEAE-纤维素柱。发现获得的大多数带3寡糖不含唾液酸。当将该中性部分在葡聚糖G-50柱上进行凝胶色谱分析时,观察到两个宽峰,表明带3糖蛋白在寡糖部分的大小上是异质的。凝胶色谱的所有级分均含有半乳糖、甘露糖、N-乙酰葡糖胺和岩藻糖。较高分子量(分子量3000-8000)的峰由岩藻糖、甘露糖、半乳糖、N-乙酰葡糖胺和N-乙酰半乳糖胺组成,摩尔比例为1.6:3.0:8.4:10.5:0.2。在α-L-岩藻糖苷酶处理后,这些寡糖中的大多数用β-半乳糖苷酶和β-N-乙酰己糖胺酶的混合物消化,得到具有α Man2-β Man-β GlcNAc-GlcNAc结构的小寡糖。甲基化研究和亚硝酸脱氨的有限降解表明,这些寡糖含有重复二糖Gal β1----4GlcNAc β1----3,在一些半乳糖残基的C-6处有分支点。这些结果表明,带3寡糖的主要部分具有共同的核心结构,重复二糖的数量存在异质性,并且在外周部分和核心部分均含有岩藻糖残基。还进行了血凝试验以确定糖蛋白的血型特异性,结果表明存在血型H和I抗原活性。