Abstract
Glycoproteins with chemically defined glycosylation sites and structures are important biopharmaceutical targets and critical tools for glycobiology. One approach toward constructing such molecules involves chemical glycosylation of aldehyde-tagged proteins. Here, we report the installation of a genetically encoded aldehyde tag at the internal glycosylation site of the crystallizable fragment (Fc) of IgG1. We replaced the natural Fc N-glycosylation sequon with a five amino-acid sequence that was efficiently converted by recombinant formylglycine generating enzyme in vitro, thereby introducing aldehyde groups for subsequent chemical elaboration. Oxime-linked glycoconjugates were synthesized by conjugating aminooxy N-acetylglucosamine to the modified Fc followed by enzymatic transfer of complex N-glycans from corresponding glycan oxazolines by an EndoS-derived glycosynthase. In this manner we generated specific Fc glycoforms without relying on natural protein glycosylation machineries. © 2014 American Chemical Society.
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CITATION STYLE
Smith, E. L., Giddens, J. P., Iavarone, A. T., Godula, K., Wang, L. X., & Bertozzi, C. R. (2014). Chemoenzymatic Fc glycosylation via engineered aldehyde tags. Bioconjugate Chemistry, 25(4), 788–795. https://doi.org/10.1021/bc500061s
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