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在线耦合高分辨色谱与极紫外光光解串联质谱:应用于通过解离光解研究复杂聚糖的结构。

Online coupling of high-resolution chromatography with extreme UV photon activation tandem mass spectrometry: Application to the structural investigation of complex glycans by dissociative photoionization.

机构信息

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

Synchrotron SOLEIL, L'Orme des Merisiers, F-91190 Gif-sur-Yvette, France; UAR 1008 CEPIA, INRA, F-44316 Nantes, France.

出版信息

Anal Chim Acta. 2016 Aug 24;933:1-9. doi: 10.1016/j.aca.2016.05.036. Epub 2016 Jun 11.

Abstract

The activation of ions by extreme-energy photons (XUV) produced by a synchrotron radiation beamline is a powerful method for characterizing complex glycans using tandem mass spectrometry (MS). As previously described, this activation method leads to rich fragmentation spectra with many structurally valuable cross-ring cleavages while maintaining labile modifications on the glycan structures. However, until now, the tandem MS event was too long to be compatible with liquid chromatography elution times. In this work, the duty cycle of the activation and detection of fragments was shortened, and the background signal on the spectra was drastically reduced. Both improvements allowed, for the first time, the successful coupling of a UHPLC system to XUV-activated tandem MS. The approach was used to characterize a complex mixture of oligo-porphyrans, which are a class of highly sulfated oligosaccharides, in a fully automated way. Due to an enhanced dynamic range and an increased sensitivity, some hypothetical structures of low abundance have been unequivocally confirmed in this study and others have been revised. Some previously undescribed species of oligo-porphyrans that exhibit lateral branching have been fully resolved. This work contributes to the scarce knowledge of the structure of porphyrans in red algae and pushes the current capacities of XUV-activation tandem MS by demonstrating the possibility of a direct coupling with UHPLC. This study will considerably broaden the applicability and practicality of this method in many fields of analytical biology.

摘要

利用同步辐射光束线产生的极能 X 射线(XUV)激活离子,是使用串联质谱(MS)对复杂聚糖进行特征分析的一种强大方法。如前所述,这种激活方法可导致具有许多结构价值的交叉环裂解的丰富碎裂谱,同时保持聚糖结构上的不稳定修饰。然而,到目前为止,串联 MS 事件的时间太长,无法与液相色谱洗脱时间兼容。在这项工作中,缩短了碎片的激活和检测的占空比,大大降低了光谱上的背景信号。这两个改进都首次允许将超高效液相色谱系统与 XUV 激活的串联 MS 成功耦合。该方法用于以全自动方式对寡聚卟啉混合物进行特征分析,寡聚卟啉是一类高度硫酸化的寡糖。由于增强的动态范围和更高的灵敏度,在本研究中,一些低丰度的假设结构已被明确证实,而其他结构则已被修正。一些以前未描述的具有侧链分支的寡聚卟啉已得到完全解析。这项工作丰富了红藻中卟啉结构的知识,并通过证明与超高效液相色谱的直接耦合的可能性,推动了 XUV 激活串联 MS 的当前能力,为该方法在分析生物学的许多领域的应用和实用性拓宽了道路。

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