电喷雾电离n-聚糖源内衰变及其对n-聚糖结构鉴定的影响

IF 1.7 3区 化学 Q4 BIOCHEMICAL RESEARCH METHODS
Chia Yen Liew, Jien-Lian Chen, Chi-Kung Ni
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引用次数: 3

摘要

合理电喷雾电离(ESI)和基质辅助激光解吸电离(MALDI)是质谱分析中常用的软电离技术。虽然MALDI的源内和源后衰减已经被广泛研究,但ESI的类似衰减却很少受到关注。先前关于ESI类似衰变的研究主要集中在多电荷蛋白质和多肽的解离上。碳水化合物在ESI中的衰变尚未研究,可能对碳水化合物结构的测定有干扰作用。方法采用高效液相色谱(HPLC)、ESI源和线性离子阱质谱仪对ESI过程中n -聚糖的断裂进行研究。结果在典型ESI操作条件下,约0.2% ~ 3%的中性n-聚糖和50%以上由唾液酸组成的n-聚糖被ESI源内衰变解离成小n-聚糖。大多数解离通道的效率随着离子传递毛管温度的升高而增加,这表明沉积到裂解前驱离子中的部分能量来自加热的毛管。ESI源内衰变的裂解模式与气相碰撞诱导解离的裂解模式略有不同。结论大n-聚糖在ESI源内衰变中解离成小n-聚糖,可能对小n-聚糖的结构鉴定产生干扰。例如,在ESI电离之前,必须使用HPLC分离大n -聚糖和小n -聚糖,以消除干扰。当n -聚糖由唾液酸组成或大n -聚糖在ESI溶液中的浓度远高于小n -聚糖时,这一点尤为重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electrospray ionization in-source decay of N-glycans and the effects on N-glycan structural identification

Rational

Electrospray ionization (ESI) and matrix-assisted laser desorption ionization (MALDI) are soft ionization techniques commonly used in mass spectrometry. Although in-source and post-source decays of MALDI have been investigated extensively, the analogous decays of ESI have received little attention. Previous studies regarding the analogous decays of ESI focus on the dissociation of multiply charged proteins and peptides. The decay of carbohydrates in ESI has not been investigated yet, and it may have interference in carbohydrate structural determination.

Methods

Commercial apparatus, including a high-performance liquid chromatography (HPLC), an ESI source, and a linear ion trap mass spectrometer, were used to investigate the fragmentation of several N-glycans during the ESI process.

Results

About 0.2%–3% of neutral N-glycans and more than 50% of N-glycans consisting of a sialic acid are dissociated into small N-glycans by ESI in-source decay in typical ESI operating conditions. The efficiencies of most dissociation channels increase as the temperature of ion transfer capillary increases, indicating that part of the energy deposited into the precursor ions for cracking is from the heated capillary. The cracking patterns of ESI in-source decay are slightly different from those of gaseous phase collision-induced dissociation.

Conclusions

Large N-glycans are dissociated into small N-glycans in ESI in-source decay that may result in the interference of the structural identification of small N-glycans. Separation of large N-glycans from small N-glycans, for example, using HPLC, prior to ESI ionization is necessary to eliminate the interference. This is particularly important when N-glycans consist of sialic acid or large N-glycans have much higher concentration than that of small N-glycans in ESI solution.

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来源期刊
CiteScore
4.10
自引率
5.00%
发文量
219
审稿时长
2.6 months
期刊介绍: Rapid Communications in Mass Spectrometry is a journal whose aim is the rapid publication of original research results and ideas on all aspects of the science of gas-phase ions; it covers all the associated scientific disciplines. There is no formal limit on paper length ("rapid" is not synonymous with "brief"), but papers should be of a length that is commensurate with the importance and complexity of the results being reported. Contributions may be theoretical or practical in nature; they may deal with methods, techniques and applications, or with the interpretation of results; they may cover any area in science that depends directly on measurements made upon gaseous ions or that is associated with such measurements.
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