Cargando…

A humanized neutralizing antibody against MERS-CoV targeting the receptor-binding domain of the spike protein

The newly-emerging Middle East respiratory syndrome coronavirus (MERS-CoV) can cause severe and fatal acute respiratory disease in humans. Despite global efforts, the potential for an associated pandemic in the future cannot be excluded. The development of effective counter-measures is urgent. MERS-...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Yan, Wan, Yuhua, Liu, Peipei, Zhao, Jincun, Lu, Guangwen, Qi, Jianxun, Wang, Qihui, Lu, Xuancheng, Wu, Ying, Liu, Wenjun, Zhang, Buchang, Yuen, Kwok-Yung, Perlman, Stanley, Gao, George F, Yan, Jinghua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4650419/
https://www.ncbi.nlm.nih.gov/pubmed/26391698
http://dx.doi.org/10.1038/cr.2015.113
_version_ 1782401486576156672
author Li, Yan
Wan, Yuhua
Liu, Peipei
Zhao, Jincun
Lu, Guangwen
Qi, Jianxun
Wang, Qihui
Lu, Xuancheng
Wu, Ying
Liu, Wenjun
Zhang, Buchang
Yuen, Kwok-Yung
Perlman, Stanley
Gao, George F
Yan, Jinghua
author_facet Li, Yan
Wan, Yuhua
Liu, Peipei
Zhao, Jincun
Lu, Guangwen
Qi, Jianxun
Wang, Qihui
Lu, Xuancheng
Wu, Ying
Liu, Wenjun
Zhang, Buchang
Yuen, Kwok-Yung
Perlman, Stanley
Gao, George F
Yan, Jinghua
author_sort Li, Yan
collection PubMed
description The newly-emerging Middle East respiratory syndrome coronavirus (MERS-CoV) can cause severe and fatal acute respiratory disease in humans. Despite global efforts, the potential for an associated pandemic in the future cannot be excluded. The development of effective counter-measures is urgent. MERS-CoV-specific anti-viral drugs or vaccines are not yet available. Using the spike receptor-binding domain of MERS-CoV (MERS-RBD) to immunize mice, we identified two neutralizing monoclonal antibodies (mAbs) 4C2 and 2E6. Both mAbs potently bind to MERS-RBD and block virus entry in vitro with high efficacy. We further investigated their mechanisms of neutralization by crystallizing the complex between the Fab fragments and the RBD, and solved the structure of the 4C2 Fab/MERS-RBD complex. The structure showed that 4C2 recognizes an epitope that partially overlaps the receptor-binding footprint in MERS-RBD, thereby interfering with the virus/receptor interactions by both steric hindrance and interface-residue competition. 2E6 also blocks receptor binding, and competes with 4C2 for binding to MERS-RBD. Based on the structure, we further humanized 4C2 by preserving only the paratope residues and substituting the remaining amino acids with the counterparts from human immunoglobulins. The humanized 4C2 (4C2h) antibody sustained similar neutralizing activity and biochemical characteristics to the parental mouse antibody. Finally, we showed that 4C2h can significantly abate the virus titers in lungs of Ad5-hCD26-transduced mice infected with MERS-CoV, therefore representing a promising agent for prophylaxis and therapy in clinical settings.
format Online
Article
Text
id pubmed-4650419
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-46504192016-11-01 A humanized neutralizing antibody against MERS-CoV targeting the receptor-binding domain of the spike protein Li, Yan Wan, Yuhua Liu, Peipei Zhao, Jincun Lu, Guangwen Qi, Jianxun Wang, Qihui Lu, Xuancheng Wu, Ying Liu, Wenjun Zhang, Buchang Yuen, Kwok-Yung Perlman, Stanley Gao, George F Yan, Jinghua Cell Res Original Article The newly-emerging Middle East respiratory syndrome coronavirus (MERS-CoV) can cause severe and fatal acute respiratory disease in humans. Despite global efforts, the potential for an associated pandemic in the future cannot be excluded. The development of effective counter-measures is urgent. MERS-CoV-specific anti-viral drugs or vaccines are not yet available. Using the spike receptor-binding domain of MERS-CoV (MERS-RBD) to immunize mice, we identified two neutralizing monoclonal antibodies (mAbs) 4C2 and 2E6. Both mAbs potently bind to MERS-RBD and block virus entry in vitro with high efficacy. We further investigated their mechanisms of neutralization by crystallizing the complex between the Fab fragments and the RBD, and solved the structure of the 4C2 Fab/MERS-RBD complex. The structure showed that 4C2 recognizes an epitope that partially overlaps the receptor-binding footprint in MERS-RBD, thereby interfering with the virus/receptor interactions by both steric hindrance and interface-residue competition. 2E6 also blocks receptor binding, and competes with 4C2 for binding to MERS-RBD. Based on the structure, we further humanized 4C2 by preserving only the paratope residues and substituting the remaining amino acids with the counterparts from human immunoglobulins. The humanized 4C2 (4C2h) antibody sustained similar neutralizing activity and biochemical characteristics to the parental mouse antibody. Finally, we showed that 4C2h can significantly abate the virus titers in lungs of Ad5-hCD26-transduced mice infected with MERS-CoV, therefore representing a promising agent for prophylaxis and therapy in clinical settings. Nature Publishing Group 2015-11 2015-09-22 /pmc/articles/PMC4650419/ /pubmed/26391698 http://dx.doi.org/10.1038/cr.2015.113 Text en Copyright © 2015 Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences
spellingShingle Original Article
Li, Yan
Wan, Yuhua
Liu, Peipei
Zhao, Jincun
Lu, Guangwen
Qi, Jianxun
Wang, Qihui
Lu, Xuancheng
Wu, Ying
Liu, Wenjun
Zhang, Buchang
Yuen, Kwok-Yung
Perlman, Stanley
Gao, George F
Yan, Jinghua
A humanized neutralizing antibody against MERS-CoV targeting the receptor-binding domain of the spike protein
title A humanized neutralizing antibody against MERS-CoV targeting the receptor-binding domain of the spike protein
title_full A humanized neutralizing antibody against MERS-CoV targeting the receptor-binding domain of the spike protein
title_fullStr A humanized neutralizing antibody against MERS-CoV targeting the receptor-binding domain of the spike protein
title_full_unstemmed A humanized neutralizing antibody against MERS-CoV targeting the receptor-binding domain of the spike protein
title_short A humanized neutralizing antibody against MERS-CoV targeting the receptor-binding domain of the spike protein
title_sort humanized neutralizing antibody against mers-cov targeting the receptor-binding domain of the spike protein
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4650419/
https://www.ncbi.nlm.nih.gov/pubmed/26391698
http://dx.doi.org/10.1038/cr.2015.113
work_keys_str_mv AT liyan ahumanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT wanyuhua ahumanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT liupeipei ahumanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT zhaojincun ahumanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT luguangwen ahumanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT qijianxun ahumanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT wangqihui ahumanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT luxuancheng ahumanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT wuying ahumanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT liuwenjun ahumanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT zhangbuchang ahumanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT yuenkwokyung ahumanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT perlmanstanley ahumanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT gaogeorgef ahumanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT yanjinghua ahumanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT liyan humanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT wanyuhua humanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT liupeipei humanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT zhaojincun humanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT luguangwen humanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT qijianxun humanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT wangqihui humanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT luxuancheng humanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT wuying humanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT liuwenjun humanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT zhangbuchang humanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT yuenkwokyung humanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT perlmanstanley humanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT gaogeorgef humanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein
AT yanjinghua humanizedneutralizingantibodyagainstmerscovtargetingthereceptorbindingdomainofthespikeprotein