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甘氨酸添加剂通过离子对亲水性相互作用色谱质谱法促进生物制药的定点糖基化分析。

Glycine additive facilitates site-specific glycosylation profiling of biopharmaceuticals by ion-pairing hydrophilic interaction chromatography mass spectrometry.

机构信息

Analytical Chemistry, Regeneron Pharmaceuticals, Inc., 777 Old Saw Mill River Road, Tarrytown, NY, 10591, USA.

出版信息

Anal Bioanal Chem. 2021 Feb;413(5):1267-1277. doi: 10.1007/s00216-020-03089-3. Epub 2020 Nov 26.

Abstract

Many biotherapeutics such as monoclonal antibodies (mAb) and Fc-domain fusion proteins contain heterogeneous glycan contents at one or multiple glycosylation site(s). Site-specific glycan profile characterization is critical for monitoring the quality of these molecules during different stages of drug development. Hydrophilic interaction chromatography (HILIC) as an orthogonal separation method to reversed-phase liquid chromatography (RPLC) can achieve better glycopeptide identification due to the effective separation between individual glycoforms as well as the separation of glycopeptides from high-abundance non-glycosylated peptides, which can be further improved by modifying the mobile phases with ion-pairing agents (IP-HILIC). However, an online IP-HILIC coupled to mass spectrometry (MS) detection may suffer from the suppression of mass spectrometry signal during electrospray ionization due to the trifluoroacetic acid (TFA), commonly used as an ion-pairing agent. Here, we reported an optimized experimental condition for IP-HILIC-MS where glycine is added in the TFA-containing mobile phases to enhance the MS detection sensitivity for glycopeptides up to ~ 50-fold by eliminating the ion-suppression effect of an ion-pairing agent while still retaining excellent separation capacity. We demonstrated that with enhanced detection sensitivity, IP-HILIC-MS can confidently identify an increased number of site-specific N-linked glycans for IgG1, and IgG4 mAbs as well as an Fc-domain fusion protein (containing five N-glycosylation sites) through MS/MS-based search in the data-dependent acquisition mode, meanwhile, achieve comparable quantitative results compared with the traditional methods. We also demonstrated that IP-HILIC-MS can be used to identify low-level O-glycosylation and non-consensus N-glycosylation on mAbs without any enrichment prior to LC-MS analysis. Graphical abstract.

摘要

许多生物治疗药物,如单克隆抗体 (mAb) 和 Fc 结构域融合蛋白,在一个或多个糖基化位点含有异质聚糖含量。在药物开发的不同阶段,对这些分子的质量进行监测,糖基化位点特异性糖型特征分析是至关重要的。亲水作用色谱 (HILIC) 作为反相液相色谱 (RPLC) 的正交分离方法,可以通过有效分离各个糖型以及从高丰度非糖基化肽中分离糖肽,从而更好地鉴定糖肽。此外,通过用离子对试剂 (IP-HILIC) 修饰流动相,可以进一步改善分离效果。然而,在线 IP-HILIC 与质谱 (MS) 检测联用可能会由于三氟乙酸 (TFA) 的存在而在电喷雾电离过程中抑制质谱信号,TFA 通常用作离子对试剂。在这里,我们报道了一种优化的 IP-HILIC-MS 实验条件,即在含 TFA 的流动相中添加甘氨酸,通过消除离子对试剂的离子抑制效应,同时仍保持出色的分离能力,将糖肽的 MS 检测灵敏度提高了约 50 倍。我们证明,通过增强检测灵敏度,IP-HILIC-MS 可以通过数据依赖型采集模式下的 MS/MS 搜索,有信心地鉴定 IgG1 和 IgG4 mAb 以及 Fc 结构域融合蛋白(包含五个 N-糖基化位点)的更多数量的特异性 N-连接聚糖,同时与传统方法相比,获得相当的定量结果。我们还证明,IP-HILIC-MS 可用于鉴定 mAb 上的低水平 O-糖基化和非共识 N-糖基化,而无需在 LC-MS 分析之前进行任何富集。

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