Abstract
A therapeutic antibody candidate (AT-19) isolated using multivalent phage display binds native tomoregulin (TR) as a multimer not as a monomer. This report raises the importance of screening and selecting phage antibodies on native antigen and reemphasizes the possibility that potentially valuable antibodies are discarded when a monomeric phage display system is used for screening. A detailed live cell panning selection and screening method to isolate multivalently active antibodies is described. AT-19 is a fully human antibody recognizing the cell surface protein TR, a proposed prostate cancer target for therapeutic antibody internalization. AT-19 was isolated from a multivalent single-chain variable fragment (scFv) antibody library rescued with hyperphage. The required multivalency for isolation of AT-19 is supported by fluorescence activated cell sorting data demonstrating binding of the multivalent AT-19 phage particles at high phage concentrations and failure of monovalent particles to bind. Pure monomeric scFv AT-19 does not bind native receptor on cells, whereas dimeric scFv or immunoglobulin G binds with nanomolar affinity. The isolation of AT-19 antibody with obligate bivalent binding activity to native TR is attributed to the use of a multivalent display of scFv on phage and the method for selecting and screening by alternate use of 2 recombinant cell lines. © 2006 Society for Biomolecular Sciences.
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Heitner, T., Satozawa, N., McLean, K., Vogel, D., Cobb, R. R., Lui, B., … Light, D. R. (2006). Obligate multivalent recognition of cell surface tomoregulin following selection from a multivalent phage antibody library. Journal of Biomolecular Screening, 11(8), 985–995. https://doi.org/10.1177/1087057106293841
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