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Sequence analysis of heparan sulphate indicates defined location of N-sulphated glucosamine and iduronate 2-sulphate residues proximal to the protein-linkage region.

机译:硫酸乙酰肝素的序列分析表明,N-硫酸化的氨基葡萄糖和二磷酸异氰酸酯的残基在蛋白质连接区附近的确定位置。

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摘要

A strategy that we originally used to identify an N-acetylated domain adjacent to the protein-linkage sequence of heparan sulphate proteoglycan (HSPG) [Lyon, Steward, Hampson & Gallagher (1987) Biochem. J. 242, 493-498] has been adapted for analysis of the location of GlcNSO3-HexA and GlcNSO3(+/- 6S)-IdoA(2S) units most proximal to the core protein. [3H]Glucosamine-labelled HSPG from human skin fibroblasts was depolymerized by using HNO2 or heparinase under conditions that allowed cleavage of all susceptible linkages. The degraded PG was coupled to Sepharose beads through the protein component, enabling specific recovery of protein-linked resistant oligosaccharides. These were released by treatment with alkaline borohydride and analysed by gel filtration and gradient PAGE. This strategy allowed investigation of the sequence of sugar residues along the chain relative to a common reference point (i.e. the reducing end of the chain). HNO2 scission confirmed the presence of a well-defined N-acetylated sequence predominantly 9-12 disaccharide units in length proximal to the core protein. Heparinase scission produced two classes of oligosaccharides (Mr approx. 7000 and 15,000) with the general formula: IdoA(2S)-GlcNSO3-[HexA-GlcNR]n-HexA-GlcNSO3-[Hex A-GlcNAc]9 12-GlcA-Gal-Gal-Xyl in which the average value for n is 1-2 for the 7000-Mr species and approx. 22 for the 15,000-Mr species. The latter oligosaccharides extend to about one-third of the total length of the HS chains (Mr approx. 45,000). HNO2 scission of these oligosaccharides enabled hypothetical models for their sequence to be proposed. The general arrangement of N-sulphated and N-acetylated disaccharides between the proximal GlcNSO3 and terminal IdoA(2S) residues of the 15,000-Mr fragment was similar to that in the original polysaccharide, suggesting the possibility of a tandemly repeating pattern in the sequence of HS.
机译:我们最初用来鉴定与乙酰肝素硫酸蛋白多糖(HSPG)的蛋白质连接序列相邻的N-乙酰化结构域的策略[Lyon,Steward,Hampson&Gallagher(1987)Biochem。 J. 242,493-498]已适用于分析最靠近核心蛋白的GlcNSO3-HexA和GlcNSO3(+/- 6S)-IdoA(2S)单元的位置。在允许所有易感键断裂的条件下,通过使用HNO2或肝素酶将人皮肤成纤维细胞中的[3H]葡萄糖胺标记的HSPG解聚。降解的PG通过蛋白质成分与Sepharose珠偶联,从而可以特异性回收蛋白质连接的抗性寡糖。通过用碱性硼氢化物处理将它们释放,并通过凝胶过滤和梯度PAGE进行分析。该策略允许研究相对于共同参考点(即链的还原端)沿链的糖残基的序列。 HNO 2的断裂证实存在明确定义的N-乙酰化序列,其主要在核心蛋白附近的长度为9-12个二糖单元。肝素酶的分裂产生了两类具有以下通式的寡糖(Mr分别约为7000和15,000):IdoA(2S)-GlcNSO3- [HexA-GlcNR] n-HexA-GlcNSO3- [HexA-GlcNAc] 9 12-GlcA-Gal -Gal-Xyl,其中对于7000-Mr物种,n的平均值为1-2,约为0.5。 15,000-Mr物种为22个。后者的寡糖延伸至HS链总长度的约三分之一(Mr约为45,000)。这些寡糖的HNO2分裂使得能够提出其序列的假设模型。 15,000-Mr片段的近端GlcNSO3和末端IdoA(2S)残基之间的N-硫酸化和N-乙酰化二糖的一般排列与原始多糖中的相似,这表明在序列中串联串联重复的可能性HS。

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