Kusche M, Lindahl U
Department of Veterinary Medical Chemistry, Swedish University of Agricultural Sciences, Uppsala.
J Biol Chem. 1990 Sep 15;265(26):15403-9.
Incubation of a microsomal fraction from murine mastocytoma, with UDP-[1-3H]GlcA, UDP-GlcNAc, and adenosine 3'-phosphate 5'-phosphosulfate (PAPS), yielded labeled, N-sulfated polysaccharides, in which most of the incorporated O-sulfate groups were located at C2 of L-iduronic acid and at C6 of D-glucosamine units. Analysis by anion-exchange high pressure liquid chromatography of disaccharides, generated by deaminative cleavage of these polysaccharides, revealed that, in addition, an appreciable portion of the -GlcNSO3-HexA-GlcNSO3- sequences in the intact polymers contained O-sulfated (at C2 or C3) D-glucuronic acid units. Calculations based on such compositional analysis of the N- and O-sulfated biosynthetic product, isolated by chromatography on DEAE-cellulose, showed that glucuronosyl 2/3-O-sulfate accounted for approximately 12% of the total incorporated O-sulfate groups. With [35S]PAPS (at a low total PAPS concentration) as an alternative source of label, the sulfated glucuronic acid residues were again detectable, albeit in much smaller amounts (1.8% of the total O-sulfate groups). Incorporation of label from UDP-[5-3H]GlcA was retained by the O-sulfated glucuronic acid units, thus demonstrating that these components had in fact been formed by sulfation of glucuronic acid residues and not by "back epimerization" of sulfated iduronic acid units. Structural analysis of polysaccharide intermediates at various stages of biosynthetic polymer modification, separated by ion-exchange chromatography, showed O-sulfation of glucuronic and iduronic acid units to appear simultaneously and before the 6-O-sulfation of glucosamine residues.
将来自小鼠肥大细胞瘤的微粒体部分与UDP-[1-³H]葡萄糖醛酸、UDP-N-乙酰葡糖胺和3'-磷酸腺苷5'-磷酸硫酸酯(PAPS)一起温育,产生了标记的N-硫酸化多糖,其中大部分掺入的O-硫酸基团位于L-艾杜糖醛酸的C2位和D-葡糖胺单元的C6位。通过对这些多糖进行脱氨基裂解产生的二糖进行阴离子交换高压液相色谱分析表明,此外,完整聚合物中相当一部分-GlcNSO₃-HexA-GlcNSO₃-序列含有O-硫酸化(在C2或C3位)的D-葡萄糖醛酸单元。基于通过DEAE-纤维素柱色谱分离得到的N-和O-硫酸化生物合成产物的这种组成分析进行的计算表明,葡糖醛酸基2/3-O-硫酸酯约占总掺入O-硫酸基团的12%。以[³⁵S]PAPS(在低总PAPS浓度下)作为标记的替代来源,硫酸化葡萄糖醛酸残基再次可检测到,尽管数量要少得多(占总O-硫酸基团的1.8%)。来自UDP-[5-³H]葡萄糖醛酸的标记掺入被O-硫酸化葡萄糖醛酸单元保留,从而证明这些组分实际上是由葡萄糖醛酸残基的硫酸化形成的,而不是由硫酸化艾杜糖醛酸单元的“反向差向异构化”形成的。通过离子交换色谱分离的生物合成聚合物修饰各个阶段的多糖中间体的结构分析表明,葡萄糖醛酸和艾杜糖醛酸单元的O-硫酸化同时出现且在葡糖胺残基的6-O-硫酸化之前。