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Identification of an anti–SARS–CoV-2 receptor-binding domain–directed human monoclonal antibody from a naïve semisynthetic library

There is a desperate need for safe and effective vaccines, therapies, and diagnostics for SARS– coronavirus 2 (CoV-2), the development of which will be aided by the discovery of potent and selective antibodies against relevant viral epitopes. Human phage display technology has revolutionized the pro...

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Autores principales: Parray, Hilal Ahmad, Chiranjivi, Adarsh Kumar, Asthana, Shailendra, Yadav, Naveen, Shrivastava, Tripti, Mani, Shailendra, Sharma, Chandresh, Vishwakarma, Preeti, Das, Supratik, Pindari, Kamal, Sinha, Subrata, Samal, Sweety, Ahmed, Shubbir, Kumar, Rajesh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7476711/
https://www.ncbi.nlm.nih.gov/pubmed/32727845
http://dx.doi.org/10.1074/jbc.AC120.014918
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author Parray, Hilal Ahmad
Chiranjivi, Adarsh Kumar
Asthana, Shailendra
Yadav, Naveen
Shrivastava, Tripti
Mani, Shailendra
Sharma, Chandresh
Vishwakarma, Preeti
Das, Supratik
Pindari, Kamal
Sinha, Subrata
Samal, Sweety
Ahmed, Shubbir
Kumar, Rajesh
author_facet Parray, Hilal Ahmad
Chiranjivi, Adarsh Kumar
Asthana, Shailendra
Yadav, Naveen
Shrivastava, Tripti
Mani, Shailendra
Sharma, Chandresh
Vishwakarma, Preeti
Das, Supratik
Pindari, Kamal
Sinha, Subrata
Samal, Sweety
Ahmed, Shubbir
Kumar, Rajesh
author_sort Parray, Hilal Ahmad
collection PubMed
description There is a desperate need for safe and effective vaccines, therapies, and diagnostics for SARS– coronavirus 2 (CoV-2), the development of which will be aided by the discovery of potent and selective antibodies against relevant viral epitopes. Human phage display technology has revolutionized the process of identifying and optimizing antibodies, providing facile entry points for further applications. Herein, we use this technology to search for antibodies targeting the receptor-binding domain (RBD) of CoV-2. Specifically, we screened a naïve human semisynthetic phage library against RBD, leading to the identification of a high-affinity single-chain fragment variable region (scFv). The scFv was further engineered into two other antibody formats (scFv-Fc and IgG1). All three antibody formats showed high binding specificity to CoV-2 RBD and the spike antigens in different assay systems. Flow cytometry analysis demonstrated specific binding of the IgG1 format to cells expressing membrane-bound CoV-2 spike protein. Docking studies revealed that the scFv recognizes an epitope that partially overlaps with angiotensin-converting enzyme 2 (ACE2)–interacting sites on the CoV-2 RBD. Given its high specificity and affinity, we anticipate that these anti-CoV-2 antibodies will be useful as valuable reagents for accessing the antigenicity of vaccine candidates, as well as developing antibody-based therapeutics and diagnostics for CoV-2.
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spelling pubmed-74767112021-01-26 Identification of an anti–SARS–CoV-2 receptor-binding domain–directed human monoclonal antibody from a naïve semisynthetic library Parray, Hilal Ahmad Chiranjivi, Adarsh Kumar Asthana, Shailendra Yadav, Naveen Shrivastava, Tripti Mani, Shailendra Sharma, Chandresh Vishwakarma, Preeti Das, Supratik Pindari, Kamal Sinha, Subrata Samal, Sweety Ahmed, Shubbir Kumar, Rajesh J Biol Chem Accelerated Communications There is a desperate need for safe and effective vaccines, therapies, and diagnostics for SARS– coronavirus 2 (CoV-2), the development of which will be aided by the discovery of potent and selective antibodies against relevant viral epitopes. Human phage display technology has revolutionized the process of identifying and optimizing antibodies, providing facile entry points for further applications. Herein, we use this technology to search for antibodies targeting the receptor-binding domain (RBD) of CoV-2. Specifically, we screened a naïve human semisynthetic phage library against RBD, leading to the identification of a high-affinity single-chain fragment variable region (scFv). The scFv was further engineered into two other antibody formats (scFv-Fc and IgG1). All three antibody formats showed high binding specificity to CoV-2 RBD and the spike antigens in different assay systems. Flow cytometry analysis demonstrated specific binding of the IgG1 format to cells expressing membrane-bound CoV-2 spike protein. Docking studies revealed that the scFv recognizes an epitope that partially overlaps with angiotensin-converting enzyme 2 (ACE2)–interacting sites on the CoV-2 RBD. Given its high specificity and affinity, we anticipate that these anti-CoV-2 antibodies will be useful as valuable reagents for accessing the antigenicity of vaccine candidates, as well as developing antibody-based therapeutics and diagnostics for CoV-2. American Society for Biochemistry and Molecular Biology 2020-09-04 2020-07-29 /pmc/articles/PMC7476711/ /pubmed/32727845 http://dx.doi.org/10.1074/jbc.AC120.014918 Text en © 2020 Parray et al. Published under exclusive license by The American Society for Biochemistry and Molecular Biology, Inc.
spellingShingle Accelerated Communications
Parray, Hilal Ahmad
Chiranjivi, Adarsh Kumar
Asthana, Shailendra
Yadav, Naveen
Shrivastava, Tripti
Mani, Shailendra
Sharma, Chandresh
Vishwakarma, Preeti
Das, Supratik
Pindari, Kamal
Sinha, Subrata
Samal, Sweety
Ahmed, Shubbir
Kumar, Rajesh
Identification of an anti–SARS–CoV-2 receptor-binding domain–directed human monoclonal antibody from a naïve semisynthetic library
title Identification of an anti–SARS–CoV-2 receptor-binding domain–directed human monoclonal antibody from a naïve semisynthetic library
title_full Identification of an anti–SARS–CoV-2 receptor-binding domain–directed human monoclonal antibody from a naïve semisynthetic library
title_fullStr Identification of an anti–SARS–CoV-2 receptor-binding domain–directed human monoclonal antibody from a naïve semisynthetic library
title_full_unstemmed Identification of an anti–SARS–CoV-2 receptor-binding domain–directed human monoclonal antibody from a naïve semisynthetic library
title_short Identification of an anti–SARS–CoV-2 receptor-binding domain–directed human monoclonal antibody from a naïve semisynthetic library
title_sort identification of an anti–sars–cov-2 receptor-binding domain–directed human monoclonal antibody from a naïve semisynthetic library
topic Accelerated Communications
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7476711/
https://www.ncbi.nlm.nih.gov/pubmed/32727845
http://dx.doi.org/10.1074/jbc.AC120.014918
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