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利用溶液中的大气压红外激光电离进行N-连接寡糖的质谱分析。

Mass spectrometry of N-linked oligosaccharides using atmospheric pressure infrared laser ionization from solution.

作者信息

Tan Phillip V, Taranenko Nelli I, Laiko Victor V, Yakshin Mikhail A, Prasad Coorg R, Doroshenko Vladimir M

机构信息

MassTech Inc., 6992 Columbia Gateway Drive, Columbia, Maryland 21046, USA.

出版信息

J Mass Spectrom. 2004 Aug;39(8):913-21. doi: 10.1002/jms.669.

Abstract

An atmospheric pressure (AP) infrared (IR) laser ionization technique, implemented on a quadrupole ion trap mass spectrometer, was used to analyze underivatized, N-linked oligosaccharides in solution. Experiments were conducted on an atmospheric pressure infrared ionization from solution (AP-IRIS) ion source which differed from previous AP IR matrix-assisted laser desorption/ionization (MALDI) interfaces in that the ion source operated in the absence of an extraction electric field with a higher power 2.94 microm IR laser. The general term 'IRIS' is used as the mechanism of ionization differs from that of MALDI, and is yet to be fully elucidated. The AP-IRIS ion source demonstrated femtomole-level sensitivity for branched oligosaccharides. AP-IRIS showed approximately 16 times improved sensitivity for oligomannose-6 and the core-fucosylated glycan M3N2F over optimal results obtainable on a AP UV-MALDI with a 2,4,6-trihydroxyacetophenone matrix. Comparison between IR and UV cases also showed less fragmentation in the IR spectrum for a glycan with a conserved trimannosyl core, core-substituted with fucose. A mixture of complex, high-mannose and sialylated glycans resulted in positive ion mass spectra with molecular ion peaks for each sugar. Tandem mass spectrometry of the sodiated molecular ions in a mixture of glycans revealed primarily glycosidic (B, Y) cleavages. The reported results show the practical utility of AP-IRIS while the ionization mechanism is still under investigation.

摘要

一种在四极杆离子阱质谱仪上实现的大气压(AP)红外(IR)激光电离技术,被用于分析溶液中未衍生化的N-连接寡糖。实验是在一种溶液大气压红外电离(AP-IRIS)离子源上进行的,该离子源与先前的AP红外基质辅助激光解吸/电离(MALDI)接口不同,在于该离子源在没有提取电场的情况下运行,使用功率更高的2.94微米红外激光。通用术语“IRIS”被使用是因为其电离机制与MALDI不同,且尚未完全阐明。AP-IRIS离子源对支链寡糖表现出飞摩尔级别的灵敏度。与使用2,4,6-三羟基苯乙酮基质的AP紫外-MALDI所能获得的最佳结果相比,AP-IRIS对寡甘露糖-6和核心岩藻糖基化聚糖M3N2F的灵敏度提高了约16倍。IR和UV情况的比较还表明,对于具有保守三甘露糖基核心且被岩藻糖取代的聚糖,IR谱中的碎片化程度更低。复杂、高甘露糖和唾液酸化聚糖的混合物产生了正离子质谱,每种糖都有分子离子峰。聚糖混合物中钠化分子离子的串联质谱主要揭示了糖苷键(B、Y)裂解。所报道的结果显示了AP-IRIS的实际效用,同时其电离机制仍在研究中。

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