Wolff Jeremy J, Laremore Tatiana N, Aslam Hammad, Linhardt Robert J, Amster I Jonathan
Department of Chemistry, University of Georgia, Athens, Georgia 30602, USA.
J Am Soc Mass Spectrom. 2008 Oct;19(10):1449-58. doi: 10.1016/j.jasms.2008.06.024. Epub 2008 Jul 2.
Electron detachment dissociation (EDD) Fourier transform mass spectrometry has recently been shown to be a powerful tool for examining the structural features of sulfated glycosaminoglycans (GAGs). The characteristics of GAG fragmentation by EDD include abundant cross-ring fragmentation primarily on hexuronic acid residues, cleavage of all glycosidic bonds, and the formation of even- and odd-electron product ions. GAG dissociation by EDD has been proposed to occur through the formation of an excited species that can undergo direct decomposition or ejects an electron and then undergoes dissociation. In this work, we perform electron-induced dissociation (EID) on singly charged GAGs to identify products that form via direct decomposition by eliminating the pathway of electron detachment. EID of GAG tetrasaccharides produces cleavage of all glycosidic bonds and abundant cross-ring fragmentation primarily on hexuronic acid residues, producing fragmentation similar to EDD of the same molecules, but distinctly different from the products of infrared multiphoton dissociation or collisionally activated decomposition. These results suggest that observed abundant fragmentation of hexuronic acid residues occurs as a result of their increased lability when they undergo electronic excitation. EID fragmentation of GAG tetrasaccharides results in both even- and odd-electron products. EID of heparan sulfate tetrasaccharide epimers produces identical fragmentation, in contrast to EDD, in which the epimers can be distinguished by their fragment ions. These data suggest that for EDD, electron detachment plays a significant role in distinguishing glucuronic acid from iduronic acid.
电子脱附解离(EDD)傅里叶变换质谱法最近已被证明是一种用于研究硫酸化糖胺聚糖(GAG)结构特征的强大工具。EDD作用下GAG的碎片化特征包括主要在己糖醛酸残基上的大量跨环碎片化、所有糖苷键的断裂以及偶电子和奇电子产物离子的形成。有人提出,EDD作用下GAG的解离是通过形成一种激发态物种发生的,该激发态物种可以直接分解或射出一个电子然后再发生解离。在这项工作中,我们对单电荷GAG进行电子诱导解离(EID),以通过消除电子脱附途径来识别通过直接分解形成的产物。GAG四糖的EID会导致所有糖苷键的断裂以及主要在己糖醛酸残基上的大量跨环碎片化,产生与相同分子的EDD相似但与红外多光子解离或碰撞激活分解产物明显不同的碎片化。这些结果表明,观察到的己糖醛酸残基的大量碎片化是由于它们在经历电子激发时稳定性增加的结果。GAG四糖的EID碎片化会产生偶电子和奇电子产物。硫酸乙酰肝素四糖差向异构体的EID产生相同的碎片化,这与EDD相反,在EDD中差向异构体可以通过它们的碎片离子来区分。这些数据表明,对于EDD来说,电子脱附在区分葡萄糖醛酸和艾杜糖醛酸方面起着重要作用。