de Haan Noortje, Yang Shuang, Cipollo John, Wuhrer Manfred
Center for Proteomics and Metabolomics, Leiden University Medical Center, Leiden, Netherlands.
Laboratory of Bacterial Polysaccharides, Division of Bacterial, Parasitic and Allergenic Products, Center for Biologics Evaluation and Research, Food and Drug Administration, Silver Spring, MD, USA.
Nat Rev Chem. 2020 May;4(5):229-242. doi: 10.1038/s41570-020-0174-3. Epub 2020 Mar 17.
Proteins can undergo glycosylation during and/or after translation to afford glycoconjugates, which are often secreted by a cell or populate cell surfaces. Changes in the glycan portion can have a strong influence on a glycoconjugate and are associated with a multitude of human pathologies. Of particular interest are sialylated glycoconjugates, which exist as constitutional isomers that differ in their linkages (α2,3, α2,6, α2,8 or α2,9) between sialic acids and their neighbouring monosaccharides. In general, mass spectrometry enables the rapid and sensitive characterization of glycosylation, but there are challenges specific to identifying and (relatively) quantifying sialic acid isomers. These challenges can be addressed using linkage-specific methodologies for sialic acid derivatization, after which mass spectrometry can enable product identification. This Review is concerned with the new and important derivatization approaches reported in the past decade, which have been implemented in various mass-spectrometry-glycomics workflows and have found clinical glycomics applications. The convenience and wide applicability of the approaches make them attractive for studies of sialylation in different types of glycoconjugate.
蛋白质在翻译过程中和/或翻译后可进行糖基化,形成糖缀合物,这些糖缀合物通常由细胞分泌或存在于细胞表面。聚糖部分的变化可对糖缀合物产生强烈影响,并与多种人类疾病相关。特别令人感兴趣的是唾液酸化糖缀合物,它们以结构异构体的形式存在,唾液酸与其相邻单糖之间的连接方式(α2,3、α2,6、α2,8或α2,9)不同。一般来说,质谱能够对糖基化进行快速、灵敏的表征,但在鉴定和(相对)定量唾液酸异构体方面存在特定挑战。使用唾液酸衍生化的连接特异性方法可以解决这些挑战,之后质谱可用于产物鉴定。本综述关注过去十年中报道的新的重要衍生化方法,这些方法已应用于各种质谱糖组学工作流程中,并已在临床糖组学中得到应用。这些方法的便利性和广泛适用性使其在不同类型糖缀合物的唾液酸化研究中具有吸引力。