Long-Term Culturing of FreeStyle 293-F Cells Affects Immunoglobulin G Glycome Composition

Author:

Lukšić Fran1,Mijakovac Anika12,Josipović Goran2,Vičić Bočkor Vedrana12,Krištić Jasminka2,Cindrić Ana2,Vinicki Martina2ORCID,Rokić Filip3ORCID,Vugrek Oliver3,Lauc Gordan24,Zoldoš Vlatka12

Affiliation:

1. Department of Biology, Faculty of Science, University of Zagreb, 10000 Zagreb, Croatia

2. Genos Glycoscience Research Laboratory, 10000 Zagreb, Croatia

3. Laboratory for Advanced Genomics, Division of Molecular Medicine, Ruđer Bošković Institute, 10000 Zagreb, Croatia

4. Department of Biochemistry and Molecular Biology, Faculty of Pharmacy and Biochemistry, University of Zagreb, 10000 Zagreb, Croatia

Abstract

Glycosylation of IgG regulates the effector function of this antibody in the immune response. Glycosylated IgG is a potent therapeutic used for both research and clinical purposes. While there is ample research on how different cell culture conditions affect IgG glycosylation, the data are missing on the stability of IgG glycome during long cell passaging, i.e., cell “aging”. To test this, we performed three independent time course experiments in FreeStyle 293-F cells, which secrete IgG with a human-like glycosylation pattern and are frequently used to generate defined IgG glycoforms. During long-term cell culturing, IgG glycome stayed fairly stable except for galactosylation, which appeared extremely variable. Cell transcriptome analysis revealed no correlation in galactosyltransferase B4GALT1 expression with galactosylation change, but with expression of EEF1A1 and SLC38A10, genes previously associated with IgG galactosylation through GWAS. The FreeStyle 293-F cell-based system for IgG production is a good model for studies of mechanisms underlying IgG glycosylation, but results from the present study point to the utmost importance of the need to control IgG galactosylation in both in vitro and in vivo systems. This is especially important for improving the production of precisely glycosylated IgG for therapeutic purposes, since IgG galactosylation affects the inflammatory potential of IgG.

Funder

European Structural and Investment Funds for the project “CardioMetabolic”

Croatian National Centre of Competence in Molecular Diagnostics

Croatian National Centre of Research Excellence in Personalized Healthcare

European Regional Development Fund Grant, project CasMouse

European Union funded grant ERC, project GlycanSwitch

Publisher

MDPI AG

Subject

Molecular Biology,Biochemistry

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