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通过 C18-LC-MS/MS 对 α2,3/α2,6-连接的 2-氨基苯甲酰胺(2AB)标记的唾液糖肽进行异构体分离。

Isomeric Separation of α2,3/α2,6-Linked 2-Aminobenzamide (2AB)-Labeled Sialoglycopeptides by C18-LC-MS/MS.

机构信息

Department of Chemistry and Biochemistry, Texas Tech University, Lubbock, Texas 79409-1061, United States.

出版信息

Anal Chem. 2023 Dec 19;95(50):18388-18397. doi: 10.1021/acs.analchem.3c03118. Epub 2023 Dec 9.

Abstract

Determination of the relative expression levels of the α2,3/α2,6-sialic acid linkage isomers on glycoproteins is critical to the analysis of various human diseases such as cancer, inflammation, and viral infection. However, it remains a challenge to separate and differentiate site-specific linkage isomers at the glycopeptide level. Some derivatization methods on the carboxyl group of sialic acid have been developed to generate mass differences between linkage isomers. In this study, we utilized chemical derivatization that occurred on the vicinal diol of sialic acid to separate linkage isomers on a reverse-phase column using a relatively short time. 2-Aminobenzamide (2AB) labeling derivatization, including periodate oxidation and reductive amination, took only ∼3 h and achieved high labeling efficiency (>90%). Within a 66 min gradient, the sialic acid linkage isomers of 2AB-labeled glycopeptides from model glycoproteins can be efficiently resolved compared to native glycopeptides. Two different methods, neuraminidase digestion and higher-energy collision dissociation tandem mass spectrometry (HCD-MS) fragmentation, were utilized to differentiate those isomeric peaks. By calculating the diagnostic oxonium ion ratio of Gal2ABNeuAc and 2ABNeuAc fragments, significant differences in chromatographic retention times and in mass spectral peak abundances were observed between linkage isomers. Their corresponding MS PCA plots also helped to elucidate the linkage information. This method was successfully applied to human blood serum. A total of 514 2AB-labeled glycopeptide structures, including 152 sets of isomers, were identified, proving the applicability of this method in linkage-specific structural characterization and relative quantification of sialic acid isomers.

摘要

确定糖蛋白上α2,3/α2,6-唾液酸连接异构体的相对表达水平对于分析癌症、炎症和病毒感染等各种人类疾病至关重要。然而,在糖肽水平上分离和区分特定连接异构体仍然是一个挑战。已经开发了一些针对唾液酸羧基的衍生化方法,以在连接异构体之间产生质量差异。在这项研究中,我们利用唾液酸邻近二醇上的化学衍生化,使用相对较短的时间在反相柱上分离连接异构体。2-氨基苯甲酰胺(2AB)标记衍生化,包括过碘酸盐氧化和还原胺化,仅需约 3 小时,且标记效率高(>90%)。在 66 分钟的梯度内,可以有效地分离模型糖蛋白中 2AB 标记的糖肽的唾液酸连接异构体,与天然糖肽相比。利用神经氨酸酶消化和更高能量碰撞解离串联质谱(HCD-MS)碎裂两种不同的方法来区分这些异构峰。通过计算 Gal2ABNeuAc 和 2ABNeuAc 片段的特征性氧鎓离子比,可以观察到连接异构体之间在色谱保留时间和质谱峰丰度上存在显著差异。相应的 MS PCA 图也有助于阐明连接信息。该方法成功应用于人血清。共鉴定出 514 种 2AB 标记的糖肽结构,包括 152 组异构体,证明了该方法在连接特异性结构特征和唾液酸异构体的相对定量中的适用性。

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