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Molecular distinctions between heparan sulphate and heparin. Analysis of sulphation patterns indicates that heparan sulphate and heparin are separate families of N-sulphated polysaccharides

机译:硫酸乙酰肝素和肝素之间的分子区别。硫酸化模式的分析表明,硫酸乙酰肝素和肝素是N硫酸化多糖的独立家族

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pHeparan sulphate and heparin are chemically related alpha β-linked glycosaminoglycans composed of alternating sequences of glucosamine and uronic acid. The amino sugars may be N-acetylated or N-sulphated, and the latter substituent is unique to these two polysaccharides. Although there is general agreement that heparan sulphate is usually less sulphated than heparin, reproducible differences in their molecular structure have been difficult to identify. We suggest that this is because most of the analytical data have been obtained with degraded materials that are not necessarily representative of complete polysaccharide chains. In the present study intact heparan sulphates, labelled biosynthetically with [3H]glucosamine and Na2(35)SO4, were isolated from the surface membranes of several types of cells in culture. The polysaccharide structure was analysed by complete HNO2 hydrolysis followed by fractionation of the products by gel filtration and high-voltage electrophoresis. Results showed that in all heparan sulphates there were approximately equal numbers of N-sulpho and N-acetyl substituents, arranged in a similar, predominantly segregated, manner along the polysaccharide chain. O-Sulphate groups were in close proximity to the N-sulphate groups but, unlike the latter, the number of O-sulphate groups could vary considerably in heparan sulphates of different cellular origins ranging from 20 to 75 O-sulphate groups per 100 disaccharide units. Inspection of the published data on heparin showed that the N-sulphate frequency was very high (greater than 80% of the glucosamine residues are N-sulphated) and the concentration of O-sulphate groups exceeded that of the N-sulphate groups. We conclude from these and other observations that heparan sulphate and heparin are separate families of N-sulphated glycosaminoglycans./p
机译:硫酸乙酰肝素和肝素是化学相关的α-β-连接的糖胺聚糖,由葡糖胺和糖醛酸的交替序列组成。氨基糖可以被N-乙酰化或N-硫酸化,并且后一个取代基是这两种多糖所独有的。尽管人们普遍认为硫酸乙酰肝素通常比肝素硫酸盐少,但很难鉴定其分子结构中可再现的差异。我们认为这是因为大多数分析数据是通过降解的材料获得的,这些材料不一定代表完整的多糖链。在本研究中,从培养的几种细胞表面膜中分离出完整的硫酸乙酰肝素,并用[3H]葡萄糖胺和Na2(35)SO4进行了生物合成标记。通过完全的HNO 2水解,然后通过凝胶过滤和高压电泳分离产物,来分析多糖结构。结果表明,在所有硫酸乙酰肝素中,大约有相等数量的N-硫代和N-乙酰基取代基,沿着多糖链以相似的,主要是分开的方式排列。 O-硫酸盐基团与N-硫酸盐基团非常接近,但与后者不同,在不同细胞来源的硫酸乙酰肝素中,O-硫酸盐基团的数量可以有很大变化,每100个二糖单位为20-75个O-硫酸盐基团。 。检查肝素中已发表的数据表明,N-硫酸盐的频率非常高(大于80%的葡萄糖胺残基被N-硫酸盐化),O-硫酸盐基团的浓度超过了N-硫酸盐基团的浓度。从这些观察结果和其他观察结果可以得出结论,硫酸乙酰肝素和肝素是N-硫酸化糖胺聚糖的独立家族。

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