Mammalian cell-based production of glycans, glycopeptides and glycomodules
Access to defined glycans and glycoconjugates is pivotal for discovery, dissection, and harnessing of a range of biological functions orchestrated by cellular glycosylation processes and the glycome. We previously employed genetic glycoengineering by nuclease-based gene editing to develop sustainabl...
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Veröffentlicht in: | Nature communications 2024-11, Vol.15 (1), p.9668-16, Article 9668 |
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Zusammenfassung: | Access to defined glycans and glycoconjugates is pivotal for discovery, dissection, and harnessing of a range of biological functions orchestrated by cellular glycosylation processes and the glycome. We previously employed genetic glycoengineering by nuclease-based gene editing to develop sustainable production of designer glycoprotein therapeutics and cell-based glycan arrays that display glycans in their natural context at the cell surface. However, access to human glycans in formats and quantities that allow structural studies of molecular interactions and use of glycans in biomedical applications currently rely on chemical and chemoenzymatic syntheses associated with considerable labor, waste, and costs. Here, we develop a sustainable and scalable method for production of glycans in glycoengineered mammalian cells by employing secreted Glycocarriers with repeat glycosylation acceptor sequence motifs for different glycans. The Glycocarrier technology provides a flexible production platform for glycans in different formats, including oligosaccharides, glycopeptides, and multimeric glycomodules, and offers wide opportunities for use in bioassays and biomedical applications.
Access to defined human glycans is crucial for biomedical research. Here, authors report Glycocarriers, a mammalian cell-based method for the sustainable and scalable production of O-, N-glycans, and glycosaminoglycans in various formats including free glycans, glycopeptides, and multimer glycomodules. |
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ISSN: | 2041-1723 2041-1723 |
DOI: | 10.1038/s41467-024-53738-9 |