| Literature DB >> 24862193 |
Stefan Zielonka1, Niklas Weber1, Stefan Becker2, Achim Doerner2, Andreas Christmann1, Christine Christmann1, Christina Uth1, Janine Fritz1, Elena Schäfer1, Björn Steinmann1, Martin Empting3, Pia Ockelmann4, Michael Lierz5, Harald Kolmar6.
Abstract
A novel method for stepwise in vitro affinity maturation of antigen-specific shark vNAR domains is described that exclusively relies on semi-synthetic repertoires derived from non-immunized sharks. Target-specific molecules were selected from a CDR3-randomized bamboo shark (Chiloscyllium plagiosum) vNAR library using yeast surface display as platform technology. Various antigen-binding vNAR domains were easily isolated by screening against several therapeutically relevant antigens, including the epithelial cell adhesion molecule (EpCAM), the Ephrin type-A receptor 2 (EphA2), and the human serine protease HTRA1. Affinity maturation was demonstrated for EpCAM and HTRA1 by diversifying CDR1 of target-enriched populations which allowed for the rapid selection of nanomolar binders. EpCAM-specific vNAR molecules were produced as soluble proteins and more extensively characterized via thermal shift assays and biolayer interferometry. Essentially, we demonstrate that high-affinity binders can be generated in vitro without largely compromising the desirable high thermostability of the vNAR scaffold.Entities:
Keywords: Semi-synthetic library; Shark vNAR antibody; Stepwise in vitro affinity maturation; Yeast surface display
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Year: 2014 PMID: 24862193 DOI: 10.1016/j.jbiotec.2014.04.023
Source DB: PubMed Journal: J Biotechnol ISSN: 0168-1656 Impact factor: 3.307