Discovery of broadly‐neutralizing antibodies against brown recluse spider and Gadim scorpion sphingomyelinases using consensus toxins as antigens

Author:

Rivera‐de‐Torre Esperanza1ORCID,Lampadariou Stefanos1,Møiniche Mark1ORCID,Bohn Markus F.1ORCID,Kazemi Seyed Mahdi2ORCID,Laustsen Andreas H.1ORCID

Affiliation:

1. Department of Biotechnology and Biomedicine Technical University of Denmark Kongens Lyngby Denmark

2. Zagros Herpetological Institute Qom Iran

Abstract

AbstractBroadly‐neutralizing monoclonal antibodies are becoming increasingly important tools for treating infectious diseases and animal envenomings. However, designing and developing broadly‐neutralizing antibodies can be cumbersome using traditional low‐throughput iterative protein engineering methods. Here, we present a new high‐throughput approach for the standardized discovery of broadly‐neutralizing monoclonal antibodies relying on phage display technology and consensus antigens representing average sequences of related proteins. We showcase the utility of this approach by applying it to toxic sphingomyelinases from the venoms of species from very distant orders of the animal kingdom, the recluse spider and Gadim scorpion. First, we designed a consensus sphingomyelinase and performed three rounds of phage display selection, followed by DELFIA‐based screening and ranking, and benchmarked this to a similar campaign involving cross‐panning against recombinant versions of the native toxins. Second, we identified two scFvs that not only bind the consensus toxins, but which can also neutralize sphingomyelinase activity of native whole venom in vitro. Finally, we conclude that the phage display campaign involving the use of the consensus toxin was more successful in yielding cross‐neutralizing scFvs than the phage display campaign involving cross‐panning.

Funder

Wellcome Trust

European Research Council

Villum Fonden

Publisher

Wiley

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