Complex Carbohydrate Research Center, University of Georgia, Athens, GA, USA.
J Am Soc Mass Spectrom. 2011 Sep;22(9):1577-87. doi: 10.1007/s13361-011-0174-0. Epub 2011 Jun 23.
Improved methods for structural analyses of glycosaminoglycans (GAGs) are required to understand their functional roles in various biological processes. Major challenges in structural characterization of complex GAG oligosaccharides using liquid chromatography-mass spectrometry (LC-MS) include the accurate determination of the patterns of sulfation due to gas-phase losses of the sulfate groups upon collisional activation and inefficient on-line separation of positional sulfation isomers prior to MS/MS analyses. Here, a sequential chemical derivatization procedure including permethylation, desulfation, and acetylation was demonstrated to enable both on-line LC separation of isomeric mixtures of chondroitin sulfate (CS) oligosaccharides and accurate determination of sites of sulfation by MS(n). The derivatized oligosaccharides have sulfate groups replaced with acetyl groups, which are sufficiently stable to survive MS(n) fragmentation and reflect the original sulfation patterns. A standard reversed-phase LC-MS system with a capillary C18 column was used for separation, and MS(n) experiments using collision-induced dissociation (CID) were performed. Our results indicate that the combination of this derivatization strategy and MS(n) methodology enables accurate identification of the sulfation isomers of CS hexasaccharides with either saturated or unsaturated nonreducing ends. Moreover, derivatized CS hexasaccharide isomer mixtures become separable by LC-MS method due to different positions of acetyl modifications.
需要改进糖胺聚糖 (GAGs) 的结构分析方法,以了解它们在各种生物过程中的功能作用。使用液相色谱-质谱联用 (LC-MS) 对复杂 GAG 寡糖进行结构表征的主要挑战包括:由于在碰撞激活时硫酸盐基团的气相损失,准确确定硫酸化模式;以及在 MS/MS 分析之前,有效在线分离位置硫酸化异构体。在此,展示了一种顺序化学衍生程序,包括甲基化、脱硫酸化和乙酰化,以使软骨素硫酸盐 (CS) 寡糖的异构体混合物能够在线进行 LC 分离,并通过 MS(n)准确确定硫酸化位点。衍生的寡糖的硫酸基团被乙酰基取代,这些乙酰基足够稳定,可以在 MS(n) 碎裂中存活下来,并反映原始的硫酸化模式。使用带有毛细管 C18 柱的标准反相 LC-MS 系统进行分离,并进行了使用碰撞诱导解离 (CID) 的 MS(n) 实验。我们的结果表明,这种衍生策略和 MS(n) 方法的结合能够准确识别具有饱和或不饱和非还原末端的 CS 六糖的硫酸化异构体。此外,由于乙酰化修饰的不同位置,衍生的 CS 六糖异构体混合物通过 LC-MS 方法变得可分离。