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使用谷胱甘肽封端的氧化铁纳米颗粒基质对聚糖进行基质辅助激光解吸电离质谱源内衰变分析。

MALDI MS in-source decay of glycans using a glutathione-capped iron oxide nanoparticle matrix.

作者信息

Liang Qiaoli, Macher Thomas, Xu Yaolin, Bao Yuping, Cassady Carolyn J

机构信息

Department of Chemistry, The University of Alabama , Tuscaloosa, Alabama 35487, United States.

出版信息

Anal Chem. 2014 Aug 19;86(16):8496-503. doi: 10.1021/ac502422a. Epub 2014 Aug 7.

Abstract

A new matrix-assisted laser desorption ionization (MALDI) mass spectrometry matrix is proposed for molecular mass and structural determination of glycans. This matrix contains an iron oxide nanoparticle (NP) core with gluthathione (GSH) molecules covalently bound to the surface. As demonstrated for the monosaccharide glucose and several larger glycans, the mass spectra exhibit good analyte ion intensities and signal-to-noise ratios, as well as an exceptionally clean background in the low mass-to-charge (m/z) region. In addition, abundant in-source decay (ISD) occurs when the laser power is increased above the ionization threshold; this indicates that the matrix provides strong energy transfer to the sample. For five model glycans, ISD produced extensive glycosidic and cross-ring cleavages in the positive ion mode from singly charged precursor ions with bound sodium ions. Linear, branched, and cyclic glycans were employed, and all were found to undergo abundant fragmentation by ISD. (18)O labeling was used to clarify m/z assignment ambiguities and showed that the majority of the fragmentation originates from the nonreducing ends of the glycans. Studies with a peracetylated glycan indicated that abundant ISD fragmentation occurs even in the absence of hydroxyl groups. The ISD product ions generated using this new matrix should prove useful in the sequencing of glycans.

摘要

提出了一种用于聚糖分子量和结构测定的新型基质辅助激光解吸电离(MALDI)质谱基质。该基质包含一个氧化铁纳米颗粒(NP)核心,其表面共价结合有谷胱甘肽(GSH)分子。对于单糖葡萄糖和几种较大的聚糖的研究表明,质谱图显示出良好的分析物离子强度和信噪比,以及在低质荷比(m/z)区域异常干净的背景。此外,当激光功率增加到高于电离阈值时,会发生大量的源内衰变(ISD);这表明该基质向样品提供了强大的能量转移。对于五种模型聚糖,ISD在正离子模式下从带有结合钠离子的单电荷前体离子产生了广泛的糖苷键和跨环裂解。使用了线性、分支和环状聚糖,发现它们都通过ISD发生大量碎片化。(18)O标记用于澄清m/z归属的模糊性,并表明大多数碎片化起源于聚糖的非还原端。对全乙酰化聚糖的研究表明,即使在没有羟基的情况下也会发生大量的ISD碎片化。使用这种新型基质产生的ISD产物离子在聚糖测序中应该会很有用。

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