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通过纳米电喷雾质谱(n)在负离子模式下对未衍生化中性人乳寡糖进行结构分析(第1部分:方法)。

Structural analysis of underivatized neutral human milk oligosaccharides in the negative ion mode by nano-electrospray MS(n) (part 1: methodology).

作者信息

Pfenninger Anja, Karas Michael, Finke Berndt, Stahl Bernd

机构信息

Institute of Pharmaceutical Chemistry, J. W. Goethe University, Frankfurt/Main, Germany.

出版信息

J Am Soc Mass Spectrom. 2002 Nov;13(11):1331-40. doi: 10.1016/S1044-0305(02)00645-1.

Abstract

Underivatized neutral oligosaccharides from human milk were analyzed by nano-electrospray ionization (ESI) using a quadrupole ion trap mass spectrometer (QIT-MS) in the negative-ion mode. Under these conditions neutral oligosaccharides are observed as deprotonated molecules [M-H]- with high intensity. CID-experiments of these species with the charge localized at the reducing end lead to C-type fragment ions forming a "new" reducing end. Fragmentations are accompanied by cross-ring cleavages that yield information about linkages of internal monosaccharides. Several isomeric compounds with distinct structural features, such as different glycosidic linkages, fucosylation and branching sites were investigated. The rules governing the fragmentation behavior of this class of oligosaccharides were elucidated and tested for a representative number of certain isomeric glycoforms using the MS/MS and MS(n) capabilities of the QIT. On the basis of the specific fragmentation behavior of deprotonated molecules, the position of fucoses and the linkage type (Gal beta-->3 GlcNAc or Gal beta1-->4 GlcNAc) could be determined and linear and branched could be differentiated. Rules could be established which can be applied in further investigations of these types of oligosaccharides even from heterogenous mixtures.

摘要

采用四极杆离子阱质谱仪(QIT-MS)在负离子模式下,通过纳米电喷雾电离(ESI)对人乳中的未衍生化中性寡糖进行分析。在这些条件下,中性寡糖以高强度的去质子化分子[M-H]-形式被观察到。对这些还原端带电荷的物种进行碰撞诱导解离(CID)实验,会产生形成“新”还原端的C型碎片离子。碎片化过程伴随着跨环裂解,从而获得有关内部单糖连接方式的信息。研究了几种具有不同结构特征的同分异构体化合物,如不同的糖苷键、岩藻糖基化和分支位点。利用QIT的串联质谱(MS/MS)和多级质谱(MS(n))功能,阐明了这类寡糖的碎片化行为规则,并对一定数量具有代表性的特定同分异构糖型进行了测试。基于去质子化分子的特定碎片化行为,可以确定岩藻糖的位置和连接类型(Galβ→3GlcNAc或Galβ1→4GlcNAc),并区分线性和分支结构。可以建立一些规则,这些规则可应用于对这类寡糖甚至异质混合物的进一步研究。

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