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A simplified and sensitive fluorescent method for disaccharide analysis of both heparan sulfate and chondroitin/dermatan sulfates from biological samples

机译:一种简化且灵敏的荧光方法,用于分析生物样品中的硫酸乙酰肝素和硫酸软骨素/硫酸皮肤素

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摘要

Sulfated glycosaminoglycans regulate the biological functions of a wide variety of proteins, primarily through high affinity interactions mediated by specific sugar sequences or patterns/densities of sulfation. Disaccharide analysis of such glycosaminoglycans yields important diagnostic and comparative structural information on sulfate patterning. When applied to specific oligosaccharides it can also make a vital contribution to sequence elucidation. Standard UV detection of lyase-generated disaccharides resolved by HPLC can lack sufficient sensitivity and be compromised by contaminating UV signals, when dealing with scarce tissue- or cell culture-derived material. Various methods exist for improved detection, but usually involve additional HPLC hardware and often necessitate different procedures for analyzing different glycosaminoglycans. We describe a simple procedure, requiring only standard HPLC instrumentation, involving prederivatization of disaccharides with 2-aminoacridone with no cleanup of samples, followed by a separation by reverse-phase HPLC that is sensitive to as little as ~100 pg (~10?13 mol) of an individual disaccharide, thereby allowing analyses of >10 ng of total glycosaminoglycan. Importantly, separate analysis of both HS/heparin and CS/DS species within a mixed glycosaminoglycan pool can be performed using the same procedure on a single column. We demonstrate its applicability in dealing with small quantities of material derived from rat liver (where we demonstrate a high abundance of the unusual CS-E species within the CS/DS pool) and MDCK cells (which revealed a HS species of relatively low N-sulfation, but high O-sulfation). This simplified method should find a widespread utility for analyzing glycosaminoglycans from limited animal and cell culture samples.
机译:硫酸化糖胺聚糖主要通过特定糖序列或硫酸化模式/密度介导的高亲和力相互作用,调节多种蛋白质的生物学功能。此类糖胺聚糖的二糖分析可提供有关硫酸盐构图的重要诊断和比较结构信息。当应用于特定的寡糖时,它也可以对序列阐明做出重要贡献。当处理稀缺的组织或细胞培养物衍生的材料时,通过HPLC解析的标准UV检测裂解酶生成的二糖可能缺乏足够的灵敏度,并且会因污染UV信号而受损。存在用于改善检测的多种方法,但是通常涉及额外的HPLC硬件,并且经常需要用于分析不同糖胺聚糖的不同程序。我们描述了一种简单的程序,仅需标准的HPLC仪器即可完成,包括使用2-氨基ac啶酮对二糖进行去皮衍生化,无需纯化样品,然后通过反相HPLC分离,其灵敏度低至〜100 pg(〜10 ?13 mol)的单个二糖,从而可以分析> 10 ng的总糖胺聚糖。重要的是,可以在同一根色谱柱上使用相同的程序对混合的糖胺聚糖池中的HS /肝素和CS / DS物质进行单独分析。我们证明了其在处理少量源自大鼠肝脏(其中在CS / DS库中显示大量不常见CS-E物种)和MDCK细胞(其中揭示了相对较低N-的HS物种)的适用性硫酸化,但高O-硫酸化)。这种简化的方法将发现广泛的实用程序,用于分析有限的动物和细胞培养物样品中的糖胺聚糖。

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  • 来源
    《Glycobiology》 |2008年第6期|483-491|共9页
  • 作者单位

    Cancer Research UK Glyco-Oncology Group School of Cancer and Imaging Sciences University of Manchester Paterson Institute for Cancer Research Manchester M20 4BX UK;

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