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Rare, convergent antibodies targeting the stem helix broadly neutralize diverse betacoronaviruses

Humanity has faced three recent outbreaks of novel betacoronaviruses, emphasizing the need to develop approaches that broadly target coronaviruses. Here, we identify 55 monoclonal antibodies from COVID-19 convalescent donors that bind diverse betacoronavirus spike proteins. Most antibodies targeted...

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Autores principales: Dacon, Cherrelle, Peng, Linghang, Lin, Ting-Hui, Tucker, Courtney, Lee, Chang-Chun D., Cong, Yu, Wang, Lingshu, Purser, Lauren, Cooper, Andrew J.R., Williams, Jazmean K., Pyo, Chul-Woo, Yuan, Meng, Kosik, Ivan, Hu, Zhe, Zhao, Ming, Mohan, Divya, Peterson, Mary, Skinner, Jeff, Dixit, Saurabh, Kollins, Erin, Huzella, Louis, Perry, Donna, Byrum, Russell, Lembirik, Sanae, Murphy, Michael, Zhang, Yi, Yang, Eun Sung, Chen, Man, Leung, Kwanyee, Weinberg, Rona S., Pegu, Amarendra, Geraghty, Daniel E., Davidson, Edgar, Doranz, Benjamin J., Douagi, Iyadh, Moir, Susan, Yewdell, Jonathan W., Schmaljohn, Connie, Crompton, Peter D., Mascola, John R., Holbrook, Michael R., Nemazee, David, Wilson, Ian A., Tan, Joshua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9639329/
https://www.ncbi.nlm.nih.gov/pubmed/36347257
http://dx.doi.org/10.1016/j.chom.2022.10.010
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author Dacon, Cherrelle
Peng, Linghang
Lin, Ting-Hui
Tucker, Courtney
Lee, Chang-Chun D.
Cong, Yu
Wang, Lingshu
Purser, Lauren
Cooper, Andrew J.R.
Williams, Jazmean K.
Pyo, Chul-Woo
Yuan, Meng
Kosik, Ivan
Hu, Zhe
Zhao, Ming
Mohan, Divya
Peterson, Mary
Skinner, Jeff
Dixit, Saurabh
Kollins, Erin
Huzella, Louis
Perry, Donna
Byrum, Russell
Lembirik, Sanae
Murphy, Michael
Zhang, Yi
Yang, Eun Sung
Chen, Man
Leung, Kwanyee
Weinberg, Rona S.
Pegu, Amarendra
Geraghty, Daniel E.
Davidson, Edgar
Doranz, Benjamin J.
Douagi, Iyadh
Moir, Susan
Yewdell, Jonathan W.
Schmaljohn, Connie
Crompton, Peter D.
Mascola, John R.
Holbrook, Michael R.
Nemazee, David
Wilson, Ian A.
Tan, Joshua
author_facet Dacon, Cherrelle
Peng, Linghang
Lin, Ting-Hui
Tucker, Courtney
Lee, Chang-Chun D.
Cong, Yu
Wang, Lingshu
Purser, Lauren
Cooper, Andrew J.R.
Williams, Jazmean K.
Pyo, Chul-Woo
Yuan, Meng
Kosik, Ivan
Hu, Zhe
Zhao, Ming
Mohan, Divya
Peterson, Mary
Skinner, Jeff
Dixit, Saurabh
Kollins, Erin
Huzella, Louis
Perry, Donna
Byrum, Russell
Lembirik, Sanae
Murphy, Michael
Zhang, Yi
Yang, Eun Sung
Chen, Man
Leung, Kwanyee
Weinberg, Rona S.
Pegu, Amarendra
Geraghty, Daniel E.
Davidson, Edgar
Doranz, Benjamin J.
Douagi, Iyadh
Moir, Susan
Yewdell, Jonathan W.
Schmaljohn, Connie
Crompton, Peter D.
Mascola, John R.
Holbrook, Michael R.
Nemazee, David
Wilson, Ian A.
Tan, Joshua
author_sort Dacon, Cherrelle
collection PubMed
description Humanity has faced three recent outbreaks of novel betacoronaviruses, emphasizing the need to develop approaches that broadly target coronaviruses. Here, we identify 55 monoclonal antibodies from COVID-19 convalescent donors that bind diverse betacoronavirus spike proteins. Most antibodies targeted an S2 epitope that included the K814 residue and were non-neutralizing. However, 11 antibodies targeting the stem helix neutralized betacoronaviruses from different lineages. Eight antibodies in this group, including the six broadest and most potent neutralizers, were encoded by IGHV1-46 and IGKV3-20. Crystal structures of three antibodies of this class at 1.5–1.75-Å resolution revealed a conserved mode of binding. COV89-22 neutralized SARS-CoV-2 variants of concern including Omicron BA.4/5 and limited disease in Syrian hamsters. Collectively, these findings identify a class of IGHV1-46/IGKV3-20 antibodies that broadly neutralize betacoronaviruses by targeting the stem helix but indicate these antibodies constitute a small fraction of the broadly reactive antibody response to betacoronaviruses after SARS-CoV-2 infection.
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spelling pubmed-96393292022-11-07 Rare, convergent antibodies targeting the stem helix broadly neutralize diverse betacoronaviruses Dacon, Cherrelle Peng, Linghang Lin, Ting-Hui Tucker, Courtney Lee, Chang-Chun D. Cong, Yu Wang, Lingshu Purser, Lauren Cooper, Andrew J.R. Williams, Jazmean K. Pyo, Chul-Woo Yuan, Meng Kosik, Ivan Hu, Zhe Zhao, Ming Mohan, Divya Peterson, Mary Skinner, Jeff Dixit, Saurabh Kollins, Erin Huzella, Louis Perry, Donna Byrum, Russell Lembirik, Sanae Murphy, Michael Zhang, Yi Yang, Eun Sung Chen, Man Leung, Kwanyee Weinberg, Rona S. Pegu, Amarendra Geraghty, Daniel E. Davidson, Edgar Doranz, Benjamin J. Douagi, Iyadh Moir, Susan Yewdell, Jonathan W. Schmaljohn, Connie Crompton, Peter D. Mascola, John R. Holbrook, Michael R. Nemazee, David Wilson, Ian A. Tan, Joshua Cell Host Microbe Article Humanity has faced three recent outbreaks of novel betacoronaviruses, emphasizing the need to develop approaches that broadly target coronaviruses. Here, we identify 55 monoclonal antibodies from COVID-19 convalescent donors that bind diverse betacoronavirus spike proteins. Most antibodies targeted an S2 epitope that included the K814 residue and were non-neutralizing. However, 11 antibodies targeting the stem helix neutralized betacoronaviruses from different lineages. Eight antibodies in this group, including the six broadest and most potent neutralizers, were encoded by IGHV1-46 and IGKV3-20. Crystal structures of three antibodies of this class at 1.5–1.75-Å resolution revealed a conserved mode of binding. COV89-22 neutralized SARS-CoV-2 variants of concern including Omicron BA.4/5 and limited disease in Syrian hamsters. Collectively, these findings identify a class of IGHV1-46/IGKV3-20 antibodies that broadly neutralize betacoronaviruses by targeting the stem helix but indicate these antibodies constitute a small fraction of the broadly reactive antibody response to betacoronaviruses after SARS-CoV-2 infection. Cell Press 2023-01-11 /pmc/articles/PMC9639329/ /pubmed/36347257 http://dx.doi.org/10.1016/j.chom.2022.10.010 Text en https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Dacon, Cherrelle
Peng, Linghang
Lin, Ting-Hui
Tucker, Courtney
Lee, Chang-Chun D.
Cong, Yu
Wang, Lingshu
Purser, Lauren
Cooper, Andrew J.R.
Williams, Jazmean K.
Pyo, Chul-Woo
Yuan, Meng
Kosik, Ivan
Hu, Zhe
Zhao, Ming
Mohan, Divya
Peterson, Mary
Skinner, Jeff
Dixit, Saurabh
Kollins, Erin
Huzella, Louis
Perry, Donna
Byrum, Russell
Lembirik, Sanae
Murphy, Michael
Zhang, Yi
Yang, Eun Sung
Chen, Man
Leung, Kwanyee
Weinberg, Rona S.
Pegu, Amarendra
Geraghty, Daniel E.
Davidson, Edgar
Doranz, Benjamin J.
Douagi, Iyadh
Moir, Susan
Yewdell, Jonathan W.
Schmaljohn, Connie
Crompton, Peter D.
Mascola, John R.
Holbrook, Michael R.
Nemazee, David
Wilson, Ian A.
Tan, Joshua
Rare, convergent antibodies targeting the stem helix broadly neutralize diverse betacoronaviruses
title Rare, convergent antibodies targeting the stem helix broadly neutralize diverse betacoronaviruses
title_full Rare, convergent antibodies targeting the stem helix broadly neutralize diverse betacoronaviruses
title_fullStr Rare, convergent antibodies targeting the stem helix broadly neutralize diverse betacoronaviruses
title_full_unstemmed Rare, convergent antibodies targeting the stem helix broadly neutralize diverse betacoronaviruses
title_short Rare, convergent antibodies targeting the stem helix broadly neutralize diverse betacoronaviruses
title_sort rare, convergent antibodies targeting the stem helix broadly neutralize diverse betacoronaviruses
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9639329/
https://www.ncbi.nlm.nih.gov/pubmed/36347257
http://dx.doi.org/10.1016/j.chom.2022.10.010
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