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Pyridylamination as a means of analyzing complex sugar chains

机译:吡啶基叠氮化作为分析复杂糖链的一种手段

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摘要

Herein, I describe pyridylamination for versatile analysis of sugar chains. The reducing ends of the sugar chains are tagged with 2-aminopyridine and the resultant chemically stable fluorescent derivatives are used for structural/functional analysis. Pyridylamination is an effective “operating system” for increasing sensitivity and simplifying the analytical procedures including mass spectrometry and NMR. Excellent separation of isomers is achieved by reversed-phase HPLC. However, separation is further improved by two-dimensional HPLC, which involves a combination of reversed-phase HPLC and size-fractionation HPLC. Moreover, a two-dimensional HPLC map is also useful for structural analysis. I describe a simple procedure for preparing homogeneous pyridylamino sugar chains that is less laborious than existing techniques and can be used for functional analysis (e.g., sugar-protein interaction). This novel approach was applied and some of the results are described: i) a glucosyl-serine type sugar chain found in blood coagulation factors; ii) discovery of endo-β-mannosidase (EC 3.2.1.152) and a new type plant α1,2-l-fucosidase; and iii) novel substrate specificity of a cytosolic α-mannosidase. Moreover, using homogeneous sugar chains of a size similar to in vivo substrates we were able to analyze interactions between sugar chains and proteins such as enzymes and lectins in detail. Interestingly, our studies reveal that some enzymes recognize a wider region of the substrate than anticipated.
机译:在这里,我描述了吡啶叠层法用于糖链的多功能分析。用2-氨基吡啶标记糖链的还原端,并将所得的化学稳定的荧光衍生物用于结构/功能分析。吡咯叠层是一种有效的“操作系统”,可以提高灵敏度并简化包括质谱和NMR在内的分析程序。反相HPLC可实现出色的异构体分离。但是,二维HPLC可进一步改善分离效果,其中涉及反相HPLC和粒度分级HPLC的结合。此外,二维HPLC图对于结构分析也很有用。我描述了一种制备均质吡啶基氨基糖链的简单程序,该程序比现有技术省力,并且可用于功能分析(例如,糖-蛋白质相互作用)。应用了这种新颖的方法,并描述了一些结果:i)在凝血因子中发现的葡萄糖基丝氨酸型糖链; ii)发现内切-β-甘露糖苷酶(EC 3.2.1.152)和一种新型植物α1,2-1-岩藻糖苷酶; iii)胞质α-甘露糖苷酶的新型底物特异性。此外,使用大小与体内底物相似的均质糖链,我们能够详细分析糖链与蛋白质(例如酶和凝集素)之间的相互作用。有趣的是,我们的研究表明,某些酶识别的底物区域比预期的要广。

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