Abstract
A convenient enzymatic strategy is reported for the modification of cell surfaces. Using a tyrosinase enzyme isolated from Agaricus bisporus, unique tyrosine residues introduced at the C-termini of nanobodies can be site-selectively oxidized to reactive o-quinones. These reactive intermediates undergo rapid modification with nucleophilic thiol, amine, and imidazole residues present on cell surfaces, producing novel nanobody-cell conjugates that display targeted antigen binding. We extend this approach toward the synthesis of nanobody-NK cell conjugates for targeted immunotherapy applications. The resulting NK cell conjugates exhibit targeted cell binding and elicit targeted cell death.
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CITATION STYLE
Maza, J. C., García-Almedina, D. M., Boike, L. E., Hamlish, N. X., Nomura, D. K., & Francis, M. B. (2022). Tyrosinase-Mediated Synthesis of Nanobody-Cell Conjugates. ACS Central Science, 8(7), 955–962. https://doi.org/10.1021/acscentsci.1c01265
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