Human IgG Subclasses Differ in the Structural Elements of Their N-Glycosylation

Publication date

2024-11-27

Authors

Wang, Weiwei
Maliepaard, JoshuaISNI 0000000493617754
Damelang, Timon
Vidarsson, GesturORCID 0000-0001-5621-003XISNI 0000000389336776
Heck, Albert J RORCID 0000-0002-2405-4404ISNI 0000000393921118
Reiding, KarliISNI 0000000492915522

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

Although immunoglobulin G (IgG) harbors just one N-glycosylation site per heavy chain, this glycosylation plays a key role in modulating its function. In human serum, IgG is classified into four subclasses (IgG1, IgG2, IgG3, IgG4), each characterized by unique features in their sequences, disulfide bridges and glycosylation signatures. While protein glycosylation is typically studied at the compositional level, this severely underestimates the complexity of the molecules involved. Glycan functionality heavily relies on the precise linkages and branching between monosaccharides, yet these features are challenging to study. Here, by development of a nanohydrophilic interaction chromatography (HILIC)-LC-MS/MS method, we reveal distinct structural glycosylation signatures for each of the four IgG subclasses, namely that IgG1 and IgG3 display predominant galactosylation of the 6-branched antenna, IgG2 instead of the 3-branched antenna, while IgG4 displays a balance. These and other subclass-specific glycostructural elements proved observable in both recombinant and endogenous IgGs as present in human plasma, in which interindividual differences and temporal stability could be demonstrated. Structural glycoproteomics is expected to fundamentally alter the way in which we study IgG, opening up a new layer of functional investigation and biomarker development, while also revealing new key structural differences between recombinant IgG subclasses in therapeutic applications.

Keywords

General Chemistry, General Chemical Engineering

Citation

Wang, W, Maliepaard, J C L, Damelang, T, Vidarsson, G, Heck, A J R & Reiding, K R 2024, 'Human IgG Subclasses Differ in the Structural Elements of Their N-Glycosylation', ACS Central Science, vol. 10, no. 11, pp. 2048-2058. https://doi.org/10.1021/acscentsci.4c01157