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应用定量 LC-MS 多属性方法监测含有两个 N-连接糖基化位点的单克隆抗体上的特定糖基化位点的聚糖异质性。

Application of a Quantitative LC-MS Multiattribute Method for Monitoring Site-Specific Glycan Heterogeneity on a Monoclonal Antibody Containing Two N-Linked Glycosylation Sites.

机构信息

Process Development, Amgen Inc. , Thousand Oaks, California 91320, United States.

出版信息

Anal Chem. 2017 Mar 21;89(6):3562-3567. doi: 10.1021/acs.analchem.6b04856. Epub 2017 Feb 27.

Abstract

A significant challenge of traditional glycan mapping techniques is that they do not provide site-specific glycosylation information. Therefore, for proteins containing multiple glycosylation sites, the individual glycan species present at a particular site cannot be differentiated from those species present at the other glycosylation sites on the molecule. Quantification of glycoform has previously been demonstrated using a multiattribute method (MAM), which can quantify multiple post-translational modifications including deamidation, oxidation, glycosylation variants, and fragmentation ( Rogers, R. S.; Nightlinger, N. S.; Livingston, B.; Campbell, P.; Bailey, R.; Balland, A. MAbs 2015 , 7 , 881 - 890 ; ref 1). In this paper we describe the application of an MAM based method for site specific quantification of N-linked glycan heterogeneity present on an IgG1 mAb molecule containing two distinct N-linked glycosylation sites: one present on the heavy chain (HC) variable region (Fab) and the other present on the conserved HC constant region (Fc). MAM is a peptide mapping method utilizing mass spectrometry to detect and quantify specific peptides of interest. The ionization properties of the glycopeptides with different classes of glycan structural variants, including high mannose, sialylated, and terminal galactosylated species were studied in detail. Our results demonstrate that MAM quantification of individual glycan species from both the Fab and Fc N-Linked glycosylation sites is consistent with quantification using the traditional hydrophilic interaction liquid chromatography (HILIC) analysis of enzymatically released and fluorescently labeled glycans. Furthermore, no significant impact from the glycoform on the ionization properties of the glycopeptide is observed. Our work demonstrates that the MAM method is a suitable approach for providing quantitative, site-specific glycan information for profiling of N-linked glycans on immunoglobulins.

摘要

传统糖链图谱技术面临的一个重大挑战是,它们无法提供糖基化的位点特异性信息。因此,对于含有多个糖基化位点的蛋白质来说,无法区分分子上特定位点存在的各个糖型与其他糖基化位点存在的糖型。先前已经使用多属性方法(MAM)来实现糖型的定量,该方法可以定量包括脱酰胺、氧化、糖基化变体和片段化在内的多种翻译后修饰(Rogers, R. S.; Nightlinger, N. S.; Livingston, B.; Campbell, P.; Bailey, R.; Balland, A. MAbs 2015, 7, 881-890; ref 1)。本文介绍了一种基于 MAM 的方法在 IgG1 单抗分子上两个不同的 N-连接糖基化位点(一个位于重链(HC)可变区(Fab),另一个位于保守的 HC 恒定区(Fc))上对 N-连接糖基化不均一性进行位点特异性定量的应用。MAM 是一种肽图谱方法,利用质谱检测和定量特定的感兴趣肽。详细研究了具有不同聚糖结构变体(包括高甘露糖、唾液酸化和末端半乳糖化)的糖肽的电离特性。我们的结果表明,来自 Fab 和 Fc N-连接糖基化位点的各个糖型的 MAM 定量与使用传统的亲水相互作用液相色谱(HILIC)分析酶切释放和荧光标记的糖的定量一致。此外,没有观察到糖型对糖肽的电离特性有显著影响。我们的工作表明,MAM 方法是一种合适的方法,可提供定量的、位点特异性的糖基化信息,用于分析免疫球蛋白上的 N-连接糖基化。

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