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首页> 外文期刊>Carbohydrate research >ANALYSIS OF THE STRUCTURAL HETEROGENEITY OF LAMINARIN BY ELECTROSPRAY-IONISATION-MASS SPECTROMETRY
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ANALYSIS OF THE STRUCTURAL HETEROGENEITY OF LAMINARIN BY ELECTROSPRAY-IONISATION-MASS SPECTROMETRY

机译:电喷雾电离质谱法分析层粘连蛋白的结构异质性

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Electrospray-ionisation-mass spectrometry (ESIMS) was used in conjunction with chemical derivatisation and degradation procedures to analyse the size heterogeneity and branching structure of laminarin from the brown alga, Laminaria digitata. Laminarin is a beta-(1 --> 3)-linked D-glucan with occasional beta-(1 --> 6)-linked branches. Electrospray-ionisation-mass spectrometry of permethylated laminarin distinguished two homologous series of molecules, a minor G-series containing 22-28 glucosyl residues, and a more abundant M-series containing 20-30 glucosyl residues linked to a mannitol residue. The relative abundance of all these molecular species could be determined simultaneously from a single mass spectrum, with a mean mass error of 0.6 atomic mass units and a mean mass accuracy of 0.011%. Both series had a mean degree of polymerisation of 25 glucosyl residues, and an approximately 3:1 molar ratio of M-series to G-series molecules was maintained across the range of molecular sizes. Treatment of laminarin with periodate, followed by reduction with borohydride, degraded terminal glucosyl residues on both the main chain and the branches, and allowed the detection of isomers differing solely in their degree of branching. M-series molecules were thus shown to contain 0, 1, 2, 3 or 4 branches, with an average of 1.3 branches per molecule; branched G-series molecules were also detected. Subsequent treatment with acid (Smith degradation) showed that 75% of the branches were single glucosyl residues. This study thus shows how the speed, resolution and mass accuracy of electrospray-ionisation-mass spectrometry can be used in the detailed structural analysis of a polydisperse polysaccharide. [References: 41]
机译:电喷雾电离质谱(ESIMS)与化学衍生化和降解程序结合使用,以分析褐藻海藻Laminaria digitata的层状蛋白的大小异质性和分支结构。层粘连蛋白是与β-(1-> 3)连接的D-葡聚糖,偶有与β-(1-> 6)连接的分支。全甲基化laminarin的电喷雾电离质谱分析区分了两个同源系列的分子,一个较小的G系列包含22-28个葡萄糖基残基,一个更丰富的M系列包含20-30个葡萄糖基残基与甘露醇残基连接。所有这些分子种类的相对丰度可以从单个质谱图同时确定,平均质量误差为0.6原子质量单位,平均质量精度为0.011%。两个系列的平均聚合度为25个葡糖基残基,并且在整个分子大小范围内,M系列与G系列分子的摩尔比保持大约3:1。用高碘酸盐处理层粘连蛋白,然后用硼氢化物还原,降解主链和支链上的末端葡糖基残基,并允许检测仅在支化度上不同的异构体。因此显示M系列分子包含0、1、2、3或4个分支,每个分子平均有1.3个分支。还检测到分支的G系列分子。随后用酸处理(史密斯降解)表明75%的分支是单个葡糖基残基。因此,这项研究显示了如何在多分散多糖的详细结构分析中使用电喷雾电离质谱的速度,分辨率和质量准确度。 [参考:41]

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