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基于 MS 的多克隆 IgG-Fc-糖基化的同种型特异性分析。

MS-Based Allotype-Specific Analysis of Polyclonal IgG-Fc -Glycosylation.

机构信息

Center for Proteomics and Metabolomics, Leiden University Medical Center, Leiden, Netherlands.

Van 't Hoff Institute for Molecular Sciences, University of Amsterdam Analytical Chemistry Group, Amsterdam, Netherlands.

出版信息

Front Immunol. 2020 Aug 21;11:2049. doi: 10.3389/fimmu.2020.02049. eCollection 2020.

Abstract

Current approaches to study glycosylation of polyclonal human immunoglobulins G (IgG) usually imply protein digestion or glycan release. While these approaches allow in-depth characterization, they also result in a loss of valuable information regarding certain subclasses, allotypes and co-occuring post-translational modifications (PTMs). Unfortunately, the high variability of polyclonal IgGs makes their intact mass spectrometry (MS) analysis extremely challenging. We propose here a middle-up strategy for the analysis of the intact fragment crystallizable (Fc) region of human plasma IgGs, with the aim of acquiring integrated information of the -glycosylation and other PTMs of subclasses and allotypes. Human plasma IgG was isolated using Fc-specific beads followed by an on-bead C 2 domain digestion with the enzyme IdeS. The obtained mixture of Fc subunits was analyzed by capillary electrophoresis (CE) and hydrophilic interaction liquid chromatography (HILIC) hyphenated with MS. CE-MS provided separation of different IgG-subclasses and allotypes, while HILIC-MS allowed resolution of the different glycoforms and their oxidized variants. The orthogonality of these techniques was key to reliably assign Fc allotypes. Five individual donors were analyzed using this approach. Heterozygosis was observed in all the analyzed donors resulting in a total of 12 allotypes identified. The assignments were further confirmed using recombinant monoclonal IgG allotypes as standards. While the glycosylation patterns were similar within allotypes of the same subclass, clear differences were observed between IgG subclasses and donors, highlighting the relevance of the proposed approach. In a single analysis, glycosylation levels specific for each allotype, relative abundances of subclasses and information on co-occurring modifications are obtained. This middle-up method represents an important step toward a comprehensive analysis of immunoglobulin G-Fc variants.

摘要

目前研究多克隆人免疫球蛋白 G(IgG)糖基化的方法通常涉及蛋白质消化或糖链释放。虽然这些方法可以进行深入的表征,但也会导致某些亚类、同种型和共存的翻译后修饰(PTM)的宝贵信息丢失。不幸的是,多克隆 IgG 的高度变异性使得其完整的质谱(MS)分析极具挑战性。在这里,我们提出了一种用于分析人血浆 IgG 完整 Fc 区的中-上策略,旨在获取亚类和同种型的 -糖基化和其他 PTM 的综合信息。使用 Fc 特异性珠子从人血浆中分离 IgG,然后用酶 IdeS 在珠子上进行 C 2 结构域消化。所得 Fc 亚基混合物通过毛细管电泳(CE)和亲水相互作用液相色谱(HILIC)与 MS 联用进行分析。CE-MS 提供了不同 IgG 亚类和同种型的分离,而 HILIC-MS 允许不同糖型及其氧化变体的分辨率。这些技术的正交性是可靠分配 Fc 同种型的关键。使用该方法分析了五个个体供体。在所有分析的供体中均观察到杂合性,共鉴定出 12 种同种型。使用重组单克隆 IgG 同种型作为标准进一步确认了这些分配。虽然同种型内的糖基化模式相似,但在 IgG 亚类和供体之间观察到明显的差异,突出了所提出方法的相关性。在单次分析中,获得了针对每种同种型的特异性糖基化水平、亚类的相对丰度以及共存修饰的信息。这种中-上方法代表了对免疫球蛋白 G-Fc 变体进行全面分析的重要一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8ab/7472933/ce0fcd68dc87/fimmu-11-02049-g001.jpg

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