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通过多通和多阶段循环行波离子淌度质谱法对天然来源的大型异构寡糖进行结构测定。

Structure Determination of Large Isomeric Oligosaccharides of Natural Origin through Multipass and Multistage Cyclic Traveling-Wave Ion Mobility Mass Spectrometry.

机构信息

INRA , UR1268 Biopolymers Interactions Assemblies, La Géraudière B.P. 71627 , F-44316 Nantes , France.

Waters Corporation , Stamford Avenue, Altrincham Road , Wilmslow SK9 4AX , United Kingdom.

出版信息

Anal Chem. 2019 Sep 17;91(18):12030-12037. doi: 10.1021/acs.analchem.9b03036. Epub 2019 Sep 3.

Abstract

Carbohydrate isomers with identical atomic composition cannot be distinguished by mass spectrometry. By separating the ions according to their conformation in the gas phase, ion mobility (IM) coupled to mass spectrometry is an attractive approach to overcome this issue and extend the limits of mass spectrometry in structural glycosciences. Recent technological developments have significantly increased the resolving power of ion mobility separators. One such instrument features a cyclic traveling-wave IM separator integrated in a quadrupole/time-of-flight mass spectrometer. This system allows for multipass ion separations and for pre-, intra-, and post-IM fragmentation. In the present study, we utilize this system to explore a complex mixture of oligoporphyrans derived from the enzymatic digestion of the cell wall of the red alga . We are able to deduce their complete structure using IM arrival times and the / of specific fragments. This approach was successfully applied for sequencing of oligoporphyrans of up to 1500 Da and included the positioning of the methyl ether and sulfate groups. The structures defined in this study by IM-MS/MS agree with those found in the past but use much more time-consuming analytical approaches. This study also revealed some so far undescribed structures, present at very low abundance. In addition, the results made it possible to compare the abundance of the different isomers released by the enzyme and to draw further conclusions on the specificity of β-porphyranase and more particularly on its accommodation tolerance of anhydro-bridges in subsites. Finally, a separation of two isomers with very similar mobility was obtained after 58 passes around the cIM, with an estimated resolving power of 920 for these triply charged species, confirming the structures attributed to these two isomers.

摘要

碳水化合物异构体具有相同的原子组成,无法通过质谱法区分。通过根据它们在气相中的构象分离离子,离子淌度(IM)与质谱相结合是克服这个问题并扩展质谱在结构糖科学中的限制的一种有吸引力的方法。最近的技术发展极大地提高了离子淌度分离器的分辨率。其中一种仪器具有集成在四极杆/飞行时间质谱仪中的循环行波 IM 分离器。该系统允许进行多通离子分离以及预、内和后 IM 碎裂。在本研究中,我们利用该系统探索了从红藻细胞壁酶解衍生的寡卟啉混合物。我们能够使用 IM 到达时间和特定片段的 / 推断它们的完整结构。该方法成功地用于测序多达 1500 Da 的寡卟啉,并包括甲醚和硫酸盐基团的定位。通过 IM-MS/MS 定义的本研究结构与过去发现的结构一致,但使用了更耗时的分析方法。这项研究还揭示了一些迄今为止尚未描述的结构,其丰度非常低。此外,这些结果使我们能够比较酶释放的不同异构体的丰度,并进一步得出关于β-卟啉酶特异性的结论,特别是关于其对亚基中脱水桥的容纳耐受性。最后,在经过 58 次围绕 cIM 的循环后,获得了两种具有非常相似淌度的异构体的分离,这些三重电荷物种的估计分辨率为 920,证实了归因于这两种异构体的结构。

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