Versatile and multivalent nanobodies efficiently neutralize SARS-CoV-2

Yufei Xiang(University of Pittsburgh), Sham Nambulli(University of Pittsburgh), Zhengyun Xiao(University of Pittsburgh), Heng Liu(University of Pittsburgh), Zhe Sang(University of Pittsburgh), W. Paul Duprex(University of Pittsburgh), Dina Schneidman‐Duhovny(Hebrew University of Jerusalem), Cheng Zhang(University of Pittsburgh), Yi Shi(University of Pittsburgh)
Science
November 5, 2020
Cited by 446Open Access
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Abstract

Cost-effective, efficacious therapeutics are urgently needed to combat the COVID-19 pandemic. In this study, we used camelid immunization and proteomics to identify a large repertoire of highly potent neutralizing nanobodies (Nbs) to the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) spike protein receptor binding domain (RBD). We discovered Nbs with picomolar to femtomolar affinities that inhibit viral infection at concentrations below the nanograms-per-milliliter level, and we determined a structure of one of the most potent Nbs in complex with the RBD. Structural proteomics and integrative modeling revealed multiple distinct and nonoverlapping epitopes and indicated an array of potential neutralization mechanisms. We bioengineered multivalent Nb constructs that achieved ultrahigh neutralization potency (half-maximal inhibitory concentration as low as 0.058 ng/ml) and may prevent mutational escape. These thermostable Nbs can be rapidly produced in bulk from microbes and resist lyophilization and aerosolization.


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