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乳寡糖的电子转移解离。

Electron transfer dissociation of milk oligosaccharides.

机构信息

Center for Biomedical Mass Spectrometry, Boston University School of Medicine, Boston, MA 02118-2646, USA.

出版信息

J Am Soc Mass Spectrom. 2011 Jun;22(6):997-1013. doi: 10.1007/s13361-011-0117-9. Epub 2011 Apr 14.

Abstract

For structural identification of glycans, the classic collision-induced dissociation (CID) spectra are dominated by product ions that derived from glycosidic cleavages, which provide only sequence information. The peaks from cross-ring fragmentation are often absent or have very low abundances in such spectra. Electron transfer dissociation (ETD) is being applied to structural identification of carbohydrates for the first time, and results in some new and detailed information for glycan structural studies. A series of linear milk sugars was analyzed by a variety of fragmentation techniques such as MS/MS by CID and ETD, and MS(3) by sequential CID/CID, CID/ETD, and ETD/CID. In CID spectra, the detected peaks were mainly generated via glycosidic cleavages. By comparison, ETD generated various types of abundant cross-ring cleavage ions. These complementary cross-ring cleavages clarified the different linkage types and branching patterns of the representative milk sugar samples. The utilization of different MS(3) techniques made it possible to verify initial assignments and to detect the presence of multiple components in isobaric peaks. Fragment ion structures and pathways could be proposed to facilitate the interpretation of carbohydrate ETD spectra, and the main mechanisms were investigated. ETD should contribute substantially to confident structural analysis of a wide variety of oligosaccharides.

摘要

为了对聚糖进行结构鉴定,经典的碰撞诱导解离(CID)谱主要由糖基裂解产生的产物离子主导,这些产物离子只能提供序列信息。在这些谱图中,通常不存在或存在非常低丰度的跨环碎裂峰。电子转移解离(ETD)首次被应用于碳水化合物的结构鉴定,为糖结构研究提供了一些新的详细信息。一系列线性乳糖果糖通过各种碎裂技术进行了分析,如 CID 和 ETD 的 MS/MS,以及顺序 CID/CID、CID/ETD 和 ETD/CID 的 MS(3)。在 CID 谱图中,检测到的峰主要是通过糖苷键裂解产生的。相比之下,ETD 产生了各种丰富的跨环裂解离子。这些互补的跨环裂解澄清了代表性乳糖果糖样品的不同连接类型和支化模式。不同的 MS(3)技术的利用使得对初始分配的验证和检测等势峰中多个成分的存在成为可能。可以提出碎片离子结构和途径,以促进对碳水化合物 ETD 谱的解释,并研究了主要的机制。ETD 应该对广泛的寡糖的结构分析有很大的贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af2b/3606914/4b8498a645cf/nihms444345f1a.jpg

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Electron transfer dissociation of milk oligosaccharides.乳寡糖的电子转移解离。
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