Synthetic antibodies designed on natural sequence landscapes |
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Authors: | Zhai Wenwu Glanville Jacob Fuhrmann Markus Mei Li Ni Irene Sundar Purnima D Van Blarcom Thomas Abdiche Yasmina Lindquist Kevin Strohner Ralf Telman Dilduz Cappuccilli Guido Finlay William J J Van den Brulle Jan Cox David R Pons Jaume Rajpal Arvind |
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Affiliation: | 1 Rinat, Pfizer Inc., 230 East Grand Avenue, South San Francisco, CA 94080, USA2 Sloning BioTechnology GmbH, Zeppelinstrasse 4, 82178 Puchheim, Germany (now part of MorphoSys AG, Lena-Christ-Strasse 48, 82152 Martinsried, Germany)3 Applied Quantitative Genotherapeutics, Pfizer Inc., 230 East Grand Avenue, South San Francisco, CA 94080, USA4 Cluster in Biomedicine (CBM), c/o Area Science Park, Strada Statale 14, km 163.5, Basovizza, 34149 Trieste, Italy5 Global Biotherapeutics Technology, Pfizer Inc., Grange Castle Business Park, Dublin D22, Ireland |
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Abstract: | We present a method for synthetic antibody library generation that combines the use of high-throughput immune repertoire analysis and a novel synthetic technology. The library design recapitulates positional amino acid frequencies observed in natural antibody repertoires. V-segment diversity in four heavy (VH) and two kappa (Vκ) germlines was introduced based on the analysis of somatically hypermutated donor-derived repertoires. Complementarity-determining region 3 length and amino acid designs were based on aggregate frequencies of all VH and Vκ sequences in the data set. The designed libraries were constructed through an adaptation of a novel gene synthesis technology that enables precise positional control of amino acid composition and incorporation frequencies. High-throughput pyrosequencing was used to monitor the fidelity of construction and characterize genetic diversity in the final 3.6 × 1010 transformants. The library exhibited Fab expression superior to currently reported synthetic approaches of equivalent diversity, with greater than 93% of clones observed to successfully display both a correctly folded heavy chain and a correctly folded light chain. Genetic diversity in the library was high, with 95% of 7.0 × 105 clones sequenced observed only once. The obtained library diversity explores a comparable sequence space as the donor-derived natural repertoire and, at the same time, is able to access novel recombined diversity due to lack of segmental linkage. The successful isolation of low- and subnanomolar-affinity antibodies against a diverse panel of receptors, growth factors, enzymes, antigens from infectious reagents, and peptides confirms the functional viability of the design strategy. |
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Keywords: | CDR, complementarity-determining region TRIM, trinucleotide phosphoramidite SF-Fab, synthetic fitness Fab HRP, horseradish peroxidase IMGT, ImMunoGeneTics RT, room temperature PBS, phosphate-buffered saline |
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