Department of Biochemistry, Center for Biomedical Mass Spectrometry , Boston University School of Medicine , Boston , Massachusetts 02118 , United States.
Complex Carbohydrate Research Center , University of Georgia , Athens , Georgia 30602 , United States.
Anal Chem. 2019 Sep 17;91(18):11738-11746. doi: 10.1021/acs.analchem.9b02313. Epub 2019 Aug 29.
Heparan sulfate (HS) mediates a wide range of protein binding interactions key to normal and pathological physiology. Though liquid chromatography coupled with mass spectrometry (LC-MS) based disaccharide composition analysis is able to profile changes in HS composition, the heterogeneity of modifications and the labile sulfate group present major challenges for liquid chromatography tandem mass spectrometry (LC-MS/MS) sequencing of the HS oligosaccharides that represent protein binding determinants. Here, we report online LC-MS/MS sequencing of HS oligosaccharides using hydrophilic interaction liquid chromatography (HILIC) and negative electron transfer dissociation (NETD). A series of synthetic HS oligosaccharides varying in chain length (tetramers and hexamers), number of sulfate groups (3-7), sulfate patterns (sulfate positional isomers), and uronic acid epimerization (epimers) were separated and sequenced. The LC elution order of isomeric compounds was associated with their fine structure. The application of an online cation exchange device (ion suppressor) enhanced the precursor charge states, and the subsequent NETD produced abundant glycosidic fragments, allowing the characterization of both lowly sulfated and highly sulfated HS oligosaccharides. Furthermore, the diagnostic cross-ring ions differentiated the 6- sulfation and 3- sulfation, allowing unambiguous structural assignment. Collectively, this LC-NETD-MS/MS method is a powerful tool for sequencing of heterogeneous HS mixtures and is applicable for the differentiation of both isomers and epimers, for the characterization of saccharide mixtures with a varying extent of sulfation and even for the determination of both predominant and rare modification motifs. Thus, LC-NETD-MS/MS has great potential for further application to biological studies.
硫酸乙酰肝素 (HS) 介导了广泛的蛋白结合相互作用,这些相互作用对正常和病理生理学都至关重要。尽管基于液相色谱与质谱联用 (LC-MS) 的二糖组成分析能够分析 HS 组成的变化,但修饰的异质性和不稳定的硫酸根基团对代表蛋白结合决定因素的 HS 寡糖的液相色谱串联质谱 (LC-MS/MS) 测序构成了重大挑战。在这里,我们报告了使用亲水作用液相色谱 (HILIC) 和负电子转移解离 (NETD) 在线进行 HS 寡糖 LC-MS/MS 测序的方法。一系列合成的 HS 寡糖,其链长 (四聚体和六聚体)、硫酸根数目 (3-7)、硫酸根模式 (硫酸根位置异构体) 和糖醛酸差向异构化 (差向异构体) 不同,它们被分离并进行测序。同系物化合物的 LC 洗脱顺序与它们的精细结构有关。在线阳离子交换装置 (离子抑制器) 的应用增强了前体的电荷状态,随后的 NETD 产生了丰富的糖苷键片段,从而能够对低硫酸化和高硫酸化的 HS 寡糖进行特征描述。此外,交叉环离子的诊断能够区分 6-硫酸化和 3-硫酸化,从而能够进行明确的结构分配。总的来说,这种 LC-NETD-MS/MS 方法是一种对异质 HS 混合物进行测序的强大工具,适用于同系物和差向异构体的区分,以及对具有不同硫酸化程度的糖混合物的特征描述,甚至可用于确定主要和罕见的修饰基序。因此,LC-NETD-MS/MS 具有在生物研究中进一步应用的巨大潜力。