Wolff Jeremy J, Chi Lianli, Linhardt Robert J, Amster I Jonathan
Department of Chemistry, University of Georgia, Athens, Georgia 30602, USA.
Anal Chem. 2007 Mar 1;79(5):2015-22. doi: 10.1021/ac061636x. Epub 2007 Jan 25.
Distinguishing the epimers iduronic acid (IdoA) and glucuronic acid (GlcA) has been a long-standing challenge for the mass spectrometry analysis of glycosaminoglycan (GAG) oligosaccharides. In this work, electron detachment dissociation (EDD) and Fourier transform ion cyclotron resonance mass spectrometry is shown to provide mass spectral features that can distinguish GlcA from IdoA in heparan sulfate (HS) tetrasaccharides. EDD of HS tetrasaccharide dianions produces a radical species that fragments to produce information-rich glycosidic and cross-ring product ions which can be used to determine the sites of acetylation/sulfation. More significantly, EDD of HS tetrasaccharide epimers produces diagnostic product ions that can be used to distinguish IdoA from GlcA. These diagnostic product ions are not observed in the tandem mass spectra obtained by collisionally activated dissociation or infrared multiphoton dissociation of the tetrasaccharides, suggesting a radical-initiated mechanism for their formation. Differences in the observed product ions obtained by EDD of the tetrasaccharide epimers can be rationalized by simple alpha-cleavage of an oxy radical located at C2 or C3 or a radical at C3 or C4. These radicals are proposed to arise from a hydrogen rearrangement in which a hydrogen atom is transferred from the C2 or C3 hydroxyl group or C3 or C4 to a carboxy radical at C5. This hydrogen transfer depends on the proximity of the carboxy radical to the hydroxyl group on C2 or C3 or the hydrogen on C3 or C4 and is thus influenced by C5 stereochemistry. These epimer-sensitive fragmentations should allow this approach to be applied to the structural analysis of a wide variety of GAG oligosaccharides.
区分差向异构体艾杜糖醛酸(IdoA)和葡萄糖醛酸(GlcA)一直是糖胺聚糖(GAG)寡糖质谱分析中一项长期存在的挑战。在这项工作中,电子脱附解离(EDD)和傅里叶变换离子回旋共振质谱被证明能够提供质谱特征,从而在硫酸乙酰肝素(HS)四糖中区分GlcA和IdoA。HS四糖二价阴离子的EDD产生一种自由基物种,该自由基会发生碎片化,产生富含信息的糖苷键和跨环产物离子,可用于确定乙酰化/硫酸化位点。更重要的是,HS四糖差向异构体的EDD产生可用于区分IdoA和GlcA的诊断性产物离子。在通过四糖的碰撞激活解离或红外多光子解离获得的串联质谱中未观察到这些诊断性产物离子,这表明它们的形成是一种自由基引发的机制。通过四糖差向异构体的EDD获得的观察到的产物离子差异,可以通过位于C2或C3的氧自由基或C3或C4的自由基的简单α-裂解来解释。这些自由基被认为是由氢重排产生的,其中一个氢原子从C2或C3羟基或C3或C4转移到C5的羧基自由基上。这种氢转移取决于羧基自由基与C2或C3上的羟基或C3或C4上的氢的接近程度,因此受C5立体化学的影响。这些对差向异构体敏感的碎片化反应应使该方法能够应用于多种GAG寡糖的结构分析。