A fully synthetic human Fab antibody library based on fixed VH/VL framework pairings with favorable biophysical properties

基于固定 VH/VL 框架配对且具有良好生物物理特性的全合成人类 Fab 抗体库

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作者:Thomas Tiller, Ingrid Schuster, Dorothée Deppe, Katja Siegers, Ralf Strohner, Tanja Herrmann, Marion Berenguer, Dominique Poujol, Jennifer Stehle, Yvonne Stark, Martin Heßling, Daniela Daubert, Karin Felderer, Stefan Kaden, Johanna Kölln, Markus Enzelberger, Stefanie Urlinger

Abstract

This report describes the design, generation and testing of Ylanthia, a fully synthetic human Fab antibody library with 1.3E+11 clones. Ylanthia comprises 36 fixed immunoglobulin (Ig) variable heavy (VH)/variable light (VL) chain pairs, which cover a broad range of canonical complementarity-determining region (CDR) structures. The variable Ig heavy and Ig light (VH/VL) chain pairs were selected for biophysical characteristics favorable to manufacturing and development. The selection process included multiple parameters, e.g., assessment of protein expression yield, thermal stability and aggregation propensity in fragment antigen binding (Fab) and IgG1 formats, and relative Fab display rate on phage. The framework regions are fixed and the diversified CDRs were designed based on a systematic analysis of a large set of rearranged human antibody sequences. Care was taken to minimize the occurrence of potential posttranslational modification sites within the CDRs. Phage selection was performed against various antigens and unique antibodies with excellent biophysical properties were isolated. Our results confirm that quality can be built into an antibody library by prudent selection of unmodified, fully human VH/VL pairs as scaffolds.

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