Abstract
To add new tools to the repertoire of protein-based multivalent scaffold design, we have developed a novel dual-labeling strategy for proteins that combines residue-specific incorporation of unnatural amino acids with chemical oxidative aldehyde formation at the N-terminus of a protein. Our approach relies on the selective introduction of two different functional moieties in a protein by mutually orthogonal copper-catalyzed azide-alkyne cycloaddition (CuAAC) and oxime ligation. This method was applied to the conjugation of biotin and β-linked galactose residues to yield an enzymatically active thermophilic lipase, which revealed specific binding to Erythrina cristagalli lectin by SPR binding studies.
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Mühlberg, M., Hoesl, M. G., Kuehne, C., Dernedde, J., Budisa, N., & Hackenberger, C. P. R. (2015). Orthogonal dual-modification of proteins for the engineering of multivalent protein scaffolds. Beilstein Journal of Organic Chemistry, 11, 784–791. https://doi.org/10.3762/bjoc.11.88
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