Authors
Jun Y Axup, Krishna M Bajjuri, Melissa Ritland, Benjamin M Hutchins, Chan Hyuk Kim, Stephanie A Kazane, Rajkumar Halder, Jane S Forsyth, Antonio F Santidrian, Karin Stafin, Yingchun Lu, Hon Tran, Aaron J Seller, Sandra L Biroc, Aga Szydlik, Jason K Pinkstaff, Feng Tian, Subhash C Sinha, Brunhilde Felding-Habermann, Vaughn V Smider, Peter G Schultz
Publication date
2012/10/2
Journal
Proceedings of the National Academy of Sciences
Volume
109
Issue
40
Pages
16101-16106
Publisher
National Academy of Sciences
Description
Antibody-drug conjugates (ADCs) allow selective targeting of cytotoxic drugs to cancer cells presenting tumor-associated surface markers, thereby minimizing systemic toxicity. Traditionally, the drug is conjugated nonselectively to cysteine or lysine residues in the antibody. However, these strategies often lead to heterogeneous products, which make optimization of the biological, physical, and pharmacological properties of an ADC challenging. Here we demonstrate the use of genetically encoded unnatural amino acids with orthogonal chemical reactivity to synthesize homogeneous ADCs with precise control of conjugation site and stoichiometry. p-Acetylphenylalanine was site-specifically incorporated into an anti-Her2 antibody Fab fragment and full-length IgG in Escherichia coli and mammalian cells, respectively. The mutant protein was selectively and efficiently conjugated to an auristatin derivative through a …
Total citations
201320142015201620172018201920202021202220232024287079725857767369536025
Scholar articles
JY Axup, KM Bajjuri, M Ritland, BM Hutchins, CH Kim… - Proceedings of the National Academy of Sciences, 2012