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通过红外和紫外光解离质谱联用技术对二糖异构体进行区分。

Differentiation of disaccharide isomers via a combination of IR and UV photodissociation mass spectrometry.

机构信息

State Key Laboratory of Elemento-organic Chemistry, College of Chemistry, Nankai University, Tianjin, China.

Life and Health Intelligent Research Institute, Tianjin University of Technology, Tianjin, China.

出版信息

Rapid Commun Mass Spectrom. 2022 May 15;36(3):e9218. doi: 10.1002/rcm.9218.

Abstract

RATIONALE

The challenge of glycan identification due to their structural complexity and diversity has profited enormously from recent developments in mass spectrometry (MS)-related methods. For photodissociation MS, infrared (IR) and ultraviolet (UV) lasers can generate complementary fragment ions, so an effective combination of the two methods may provide rich and valuable fragmentation patterns for glycan analysis.

METHODS

A 7.0 T Fourier transform ion cyclotron resonance (FTICR) mass spectrometer equipped with a double-beam laser system was applied for the experiments. 3,5-Diiodo-L-tyrosine was selected as the assistant molecule to form complex ions with ten isomeric disaccharides through electrospray ionization. The complex ions were further isolated and irradiated by IR and UV lasers separately or continuously in the FTICR cell.

RESULTS

By combining the two complementary fragment spectra generated from the IR and UV lasers, a clear identification of all the ten isomers was achieved using their binary codes based on their fragmentation patterns. The double-beam method simplifies the experiment by introducing the two lasers sequentially in one experiment, providing richer fragmentation patterns and making the full discrimination easier.

CONCLUSIONS

This study demonstrates the capabilities of the combination of IR and UV photodissociation MS in the identification of diverse glycan isomers. The double-beam photodissociation method described here distinguished compositional, configurational and connectivity disaccharide isomers successfully. Compared with the data accumulation method based on separate IR and UV experiments, this method is simpler, faster, more flexible and also characterized by richer fragmentation patterns.

摘要

原理

由于聚糖结构复杂且多样,其鉴定一直面临挑战,而质谱(MS)相关方法的最新进展极大地促进了聚糖鉴定。对于光解离 MS,红外(IR)和紫外(UV)激光可以产生互补的碎片离子,因此两种方法的有效结合可能为聚糖分析提供丰富而有价值的碎裂模式。

方法

本研究采用配备双光束激光系统的 7.0 T 傅里叶变换离子回旋共振(FTICR)质谱仪进行实验。选择 3,5-二碘-L-酪氨酸作为辅助分子,通过电喷雾电离与十种异构二糖形成络合离子。进一步在 FTICR 池中对络合离子进行分离,并分别或连续用 IR 和 UV 激光进行辐照。

结果

通过结合来自 IR 和 UV 激光的两种互补的碎片谱,根据其碎裂模式,使用它们的二进制代码,实现了所有十种异构体的清晰鉴定。双光束方法通过在一个实验中顺序引入两种激光,简化了实验,提供了更丰富的碎裂模式,使完全区分更容易。

结论

本研究证明了 IR 和 UV 光解离 MS 联合在鉴定不同聚糖异构体方面的能力。本文描述的双光束光解离方法成功区分了组成、构型和连接性二糖异构体。与基于单独的 IR 和 UV 实验的数据积累方法相比,该方法更简单、更快、更灵活,并且具有更丰富的碎裂模式。

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