Viitala J, Karhi K K, Gahmberg C G, Finne J, Järnefelt J, Myllylä G, Krusius T
Eur J Biochem. 1981 Jan;113(2):259-65. doi: 10.1111/j.1432-1033.1981.tb05061.x.
The distribution of blood-group A and B determinants was studied by isolating blood-group ABH-active polyglycosyl peptides from delipidated human blood-group AB erythrocyte membranes after extensive digestion with pronase followed by chromatography on Bandeiraea simplicifolia I (BsI) lectin coupled to Sepharose. 20% of the polyglycosyl peptides were bound to BsI lectin. The glycopeptides bound were further fractionated using the blood-group-A-specific lectin from Vicia cracca (Vc). Approximately half of these were bound to the Vc lectin. The glycopeptides, which were bound to the Vc column, were not bound to the blood-group-B-specific isolectin from B. simplicifolia (BsIB4) whereas the Vc-unbound glycopeptides readily bound. The results indicate that in the polyglycosyl peptides isolated from AB erythrocytes A and B determinants are located in different carbohydrate chains. The polyglycosyl peptides, which did not bind to BsI lectin, were composed on the average of 30 monosaccharide units and those that bound contained on the average 55 monosaccharide units. The sugar composition was similar in both fractions except that N-acetylgalactosamine was found only in the BsI-bound glycopeptides. The substitution patterns of the monosaccharides were quite similar in both fractions except 2,3-O-linked galactose, which was enriched 7.5-fold in the BsI-bound glycopeptides and 3,6-O-linked galactose, which also enriched in the BsI-bound glycopeptides suggesting that these have a more branched structure than the BsI-unbound glycopeptides. Glycopeptides derived from bands 3 and 4.5 were prepared from A1B-blood-group erythrocyte membranes and fractionated as above. 25% of the glycopeptides were bound to BsI-lectin from both samples. 70% of the BsI-bound material from band 3 was bound to Vc lectin and 60% from band 4.5. The results indicate heterogeneity in the glycosylation of these bands.
通过以下方法研究血型A和B决定簇的分布:用链霉蛋白酶充分消化脱脂的人AB血型红细胞膜后,从其中分离出血型ABH活性多聚糖基肽,然后在与琼脂糖偶联的单叶豆(BsI)凝集素上进行层析。20%的多聚糖基肽与BsI凝集素结合。使用来自广布野豌豆(Vc)的血型A特异性凝集素对结合的糖肽进一步分级分离。其中约一半与Vc凝集素结合。与Vc柱结合的糖肽不与来自单叶豆(BsIB4)的血型B特异性异凝集素结合,而未与Vc结合的糖肽则很容易结合。结果表明,从AB红细胞中分离出的多聚糖基肽中,A和B决定簇位于不同的碳水化合物链中。未与BsI凝集素结合的多聚糖基肽平均由30个单糖单元组成,而结合的多聚糖基肽平均含有55个单糖单元。除了仅在与BsI结合的糖肽中发现N-乙酰半乳糖胺外,两个级分中的糖组成相似。两个级分中,单糖的取代模式相当相似,除了2,3-O-连接的半乳糖在与BsI结合的糖肽中富集了7.5倍,3,6-O-连接的半乳糖也在与BsI结合的糖肽中富集,这表明它们比未与BsI结合的糖肽具有更分支的结构。从A1B血型红细胞膜制备来自条带3和4.5的糖肽,并按上述方法分级分离。两个样品中25%的糖肽与BsI凝集素结合。来自条带3的与BsI结合的物质中70%与Vc凝集素结合,来自条带4.5的为60%。结果表明这些条带的糖基化存在异质性。