Department of Chemistry and Shanghai Cancer Center, Fudan University, Shanghai, 200032, People's Republic of China.
Institutes of Biomedical Sciences and NHC Key Laboratory of Glycoconjugates Research, Fudan University, Shanghai 200032, People's Republic of China.
Anal Chem. 2022 Mar 22;94(11):4666-4676. doi: 10.1021/acs.analchem.1c04760. Epub 2022 Mar 8.
Linkage isomers (α-2,3- or α-2,6-linkage) of sialylated N-glycans are involved in the emergence and progression of some diseases, so they are of great significance for diagnosing and monitoring diseases. However, the qualitative and quantitative analysis of sialylated N-glycan linkage isomers remains challenging due to their low abundance and limited isomeric separation techniques. Herein, we developed a novel strategy integrating one-step sialic acid derivatization, positive charge-sensitive separation and highly sensitive detection based on microfluidic capillary electrophoresis-mass spectrometry (MCE-MS) for fast and specific analysis of α-2,3- and α-2,6-linked sialylated N-glycan isomers. A kind of easily charged long-chain amino compound was screened first for one-step sialic acid derivatization so that only α-2,3- and α-2,6-linked isomers can be quickly and efficiently separated within 10 min by MCE due to the difference in structural conformation, whose separation mechanism was further theoretically supported by molecular dynamic simulation. In addition, different sialylated N-glycans were separated in order according to the number of sialic acids, so that a migration time-based prediction of the number of sialic acids was achieved. Finally, the sialylated N-glycome of human serum was profiled within 10 min and 6 of the 52 detected sialylated N-glycans could be potential diagnostic biomarkers of cervical cancer (CC), whose α-2,3- and α-2,6-linked isomers were distinguished by α-2,3Neuraminidase S.
唾液酸化 N-聚糖的连接异构体(α-2,3-或 α-2,6-连接)与一些疾病的发生和进展有关,因此对于疾病的诊断和监测具有重要意义。然而,由于其丰度低和有限的异构分离技术,唾液酸化 N-聚糖连接异构体的定性和定量分析仍然具有挑战性。在此,我们开发了一种新的策略,该策略整合了一步唾液酸衍生化、正电荷敏感分离和基于微流控毛细管电泳-质谱(MCE-MS)的高灵敏度检测,用于快速和特异性分析 α-2,3-和 α-2,6 连接的唾液酸化 N-聚糖异构体。首先筛选了一种易荷长链氨基化合物用于一步唾液酸衍生化,使得只有 α-2,3-和 α-2,6 连接异构体可以在 10 min 内通过 MCE 快速高效地分离,这是由于结构构象的差异,其分离机制进一步通过分子动力学模拟得到理论支持。此外,根据唾液酸的数量对不同的唾液酸化 N-聚糖进行了顺序分离,从而实现了基于迁移时间的唾液酸数量预测。最后,在 10 min 内对人血清中的唾液酸 N-聚糖组进行了分析,并鉴定出 52 种检测到的唾液酸化 N-聚糖中的 6 种可能是宫颈癌(CC)的诊断生物标志物,其 α-2,3-和 α-2,6-异构体通过 α-2,3Neuraminidase S 进行区分。