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高能光子活化串联质谱法为从大型藻类细胞壁中提取的高度硫酸化寡糖的结构提供了前所未有的见解。

High-energy photon activation tandem mass spectrometry provides unprecedented insights into the structure of highly sulfated oligosaccharides extracted from macroalgal cell walls.

作者信息

Ropartz David, Giuliani Alexandre, Hervé Cécile, Geairon Audrey, Jam Murielle, Czjzek Mirjam, Rogniaux Hélène

机构信息

INRA, UR1268 Biopolymers Interactions Assemblies F-44316 NANTES, France.

出版信息

Anal Chem. 2015 Jan 20;87(2):1042-9. doi: 10.1021/ac5036007. Epub 2015 Jan 5.

DOI:10.1021/ac5036007
PMID:25495706
Abstract

Extreme ultraviolet photon activation tandem mass spectrometry (MS) at 69 nm (18 eV) was used to characterize mixtures of oligo-porphyrans, a class of highly sulfated oligosaccharides. Porphyrans, hybrid polymers whose structures are far from known, continue to provide a challenge for analytical method development. Activation by 18 eV photons led to a rich fragmentation of the oligo-porphyrans, with many cross-ring and glycosidic cleavages. In contrast to multistage MSn strategies such as activated electron photodetachment dissociation, a single step of irradiation by energetic UV of multiply charged anions led to a complete fragmentation of the oligo-porphyrans. In both ionization modes, the sulfate groups were retained on the backbone, which allowed the pattern of these modifications along the porphyran backbone to be described in unprecedented detail. Many structures released by the enzymatic degradation of the porphyran were completely resolved, including isomers. This work extends the existing knowledge of the structure of porphyrans. In addition, it provides a new demonstration of the potential of activation by high-energy photons for the structural analysis of oligosaccharides, even in unseparated mixtures, with a particular focus on sulfated compounds.

摘要

采用69纳米(18电子伏特)的极紫外光子活化串联质谱(MS)对一类高度硫酸化的低聚糖——寡聚紫菜聚糖混合物进行表征。紫菜聚糖是一类结构尚不清楚的杂合聚合物,其分析方法的开发仍然面临挑战。18电子伏特光子的活化导致寡聚紫菜聚糖发生丰富的碎片化,出现许多跨环和糖苷键断裂。与诸如活化电子光解离等多级MSn策略不同,对多电荷阴离子进行一次高能紫外照射就能使寡聚紫菜聚糖完全碎片化。在两种电离模式下,硫酸根都保留在主链上,这使得能够以前所未有的详细程度描述这些修饰在紫菜聚糖主链上的分布情况。通过紫菜聚糖酶解释放出的许多结构,包括异构体,都得到了完全解析。这项工作扩展了我们对紫菜聚糖结构的现有认识。此外,它还为高能光子活化在寡糖结构分析中的潜力提供了新的例证,即使是在未分离的混合物中,尤其侧重于硫酸化化合物。

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