A pseudovirus system enables deep mutational scanning of the full SARS-CoV-2 spike

Author:

Dadonaite BernadetaORCID,Crawford Katharine H DORCID,Radford Caelan E,Farrell Ariana G,Yu Timothy C,Hannon William W,Zhou Panpan,Andrabi RaieesORCID,Burton Dennis RORCID,Liu Lihong,Ho David D.ORCID,Neher Richard A.ORCID,Bloom Jesse DORCID

Abstract

AbstractA major challenge in understanding SARS-CoV-2 evolution is interpreting the antigenic and functional effects of emerging mutations in the viral spike protein. Here we describe a new deep mutational scanning platform based on non-replicative pseudotyped lentiviruses that directly quantifies how large numbers of spike mutations impact antibody neutralization and pseudovirus infection. We demonstrate this new platform by making libraries of the Omicron BA.1 and Delta spikes. These libraries each contain ~7000 distinct amino-acid mutations in the context of up to ~135,000 unique mutation combinations. We use these libraries to map escape mutations from neutralizing antibodies targeting the receptor binding domain, N-terminal domain, and S2 subunit of spike. Overall, this work establishes a high-throughput and safe approach to measure how ~105combinations of mutations affect antibody neutralization and spike-mediated infection. Notably, the platform described here can be extended to the entry proteins of many other viruses.

Publisher

Cold Spring Harbor Laboratory

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