Engineering of CHO cells for the production of recombinant glycoprotein vaccines with xylosylated N-glycans

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Abstract

Xylose is a general component of O-glycans in mammals. Core-xylosylation of N-glycans is only found in plants and helminth. Consequently, xylosylated N-glycans cause immunological response in humans. We have used the F-protein of the human respiratory syncytial virus (RSV), one of the main causes of respiratory tract infection in infants and elderly, as a model protein for vaccination. The RSV-F protein was expressed in CHO-DG44 cells, which were further modified by co-expression of β1,2-xylosyltransferase from Nicotiana tabacum. Xylosylation of RSV-F N-glycans was shown by monosaccharide analysis and MALDI-TOF mass spectrometry. In immunogenic studies with a human artificial lymph node model, the engineered RSV-F protein revealed improved vaccination efficacy.

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Sandig, G., von Horsten, H. H., Radke, L., Blanchard, V., Frohme, M., Giese, C., … Hinderlich, S. (2017). Engineering of CHO cells for the production of recombinant glycoprotein vaccines with xylosylated N-glycans. Bioengineering, 4(2). https://doi.org/10.3390/bioengineering4020038

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