Cargando…

Junctional and somatic hypermutation-induced CX(4)C motif is critical for the recognition of a highly conserved epitope on HCV E2 by a human broadly neutralizing antibody

Induction of broadly neutralizing monoclonal antibodies (bNAbs) that bind to the viral envelope glycoproteins is a major goal of hepatitis C virus (HCV) vaccine research. The study of bNAbs arising in natural infection is essential in this endeavor. We generated a human antibody, 8D6, recognizing th...

Descripción completa

Detalles Bibliográficos
Autores principales: Yi, Chunyan, Xia, Jing, He, Lan, Ling, Zhiyang, Wang, Xuesong, Yan, Yu, Wang, Jiangjun, Zhao, Xinhao, Fan, Weiguo, Sun, Xiaoyu, Zhang, Ronghua, Ye, Sheng, Zhang, Rongguang, Xu, Yongfen, Ma, Liyan, Zhang, Yaguang, Zhou, Honglin, Huang, Zhong, Niu, Junqi, Long, Gang, Lu, Junxia, Zhong, Jin, Sun, Bing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7222171/
https://www.ncbi.nlm.nih.gov/pubmed/32235917
http://dx.doi.org/10.1038/s41423-020-0403-1
_version_ 1783533514731290624
author Yi, Chunyan
Xia, Jing
He, Lan
Ling, Zhiyang
Wang, Xuesong
Yan, Yu
Wang, Jiangjun
Zhao, Xinhao
Fan, Weiguo
Sun, Xiaoyu
Zhang, Ronghua
Ye, Sheng
Zhang, Rongguang
Xu, Yongfen
Ma, Liyan
Zhang, Yaguang
Zhou, Honglin
Huang, Zhong
Niu, Junqi
Long, Gang
Lu, Junxia
Zhong, Jin
Sun, Bing
author_facet Yi, Chunyan
Xia, Jing
He, Lan
Ling, Zhiyang
Wang, Xuesong
Yan, Yu
Wang, Jiangjun
Zhao, Xinhao
Fan, Weiguo
Sun, Xiaoyu
Zhang, Ronghua
Ye, Sheng
Zhang, Rongguang
Xu, Yongfen
Ma, Liyan
Zhang, Yaguang
Zhou, Honglin
Huang, Zhong
Niu, Junqi
Long, Gang
Lu, Junxia
Zhong, Jin
Sun, Bing
author_sort Yi, Chunyan
collection PubMed
description Induction of broadly neutralizing monoclonal antibodies (bNAbs) that bind to the viral envelope glycoproteins is a major goal of hepatitis C virus (HCV) vaccine research. The study of bNAbs arising in natural infection is essential in this endeavor. We generated a human antibody, 8D6, recognizing the E2 protein of HCV isolated from a chronic hepatitis C patient. This antibody shows broadly neutralizing activity, which covers a pan-genotypic panel of cell culture-derived HCV virions (HCVcc). Functional and epitope analyses demonstrated that 8D6 can block the interaction between E2 and CD81 by targeting a highly conserved epitope on E2. We describe how the 8D6 lineage evolved via somatic hypermutation to achieve broad neutralization. We found that the V(D)J recombination-generated junctional and somatic hypermutation-induced disulfide bridge (C-C) motif in the CDRH3 is critical for the broad neutralization and binding activity of 8D6. This motif is conserved among a series of broadly neutralizing HCV antibodies, indicating a common binding model. Next, the 8D6 inferred germline (iGL) was reconstructed and tested for its binding affinity and neutralization activity. Interestingly, 8D6 iGL-mediated relatively strong inhibition of the 1b genotype PR79L9 strain, suggesting that PR79L9 may serve as a potential natural viral strain that provides E2 sequences that induce bNAbs. Overall, our detailed epitope mapping and genetic studies of the HCV E2-specific mAb 8D6 have allowed for further refinement of antigenic sites on E2 and reveal a new mechanism to generate a functional CDRH3, while its iGL can serve as a probe to identify potential HCV vaccine strains.
format Online
Article
Text
id pubmed-7222171
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-72221712020-05-14 Junctional and somatic hypermutation-induced CX(4)C motif is critical for the recognition of a highly conserved epitope on HCV E2 by a human broadly neutralizing antibody Yi, Chunyan Xia, Jing He, Lan Ling, Zhiyang Wang, Xuesong Yan, Yu Wang, Jiangjun Zhao, Xinhao Fan, Weiguo Sun, Xiaoyu Zhang, Ronghua Ye, Sheng Zhang, Rongguang Xu, Yongfen Ma, Liyan Zhang, Yaguang Zhou, Honglin Huang, Zhong Niu, Junqi Long, Gang Lu, Junxia Zhong, Jin Sun, Bing Cell Mol Immunol Article Induction of broadly neutralizing monoclonal antibodies (bNAbs) that bind to the viral envelope glycoproteins is a major goal of hepatitis C virus (HCV) vaccine research. The study of bNAbs arising in natural infection is essential in this endeavor. We generated a human antibody, 8D6, recognizing the E2 protein of HCV isolated from a chronic hepatitis C patient. This antibody shows broadly neutralizing activity, which covers a pan-genotypic panel of cell culture-derived HCV virions (HCVcc). Functional and epitope analyses demonstrated that 8D6 can block the interaction between E2 and CD81 by targeting a highly conserved epitope on E2. We describe how the 8D6 lineage evolved via somatic hypermutation to achieve broad neutralization. We found that the V(D)J recombination-generated junctional and somatic hypermutation-induced disulfide bridge (C-C) motif in the CDRH3 is critical for the broad neutralization and binding activity of 8D6. This motif is conserved among a series of broadly neutralizing HCV antibodies, indicating a common binding model. Next, the 8D6 inferred germline (iGL) was reconstructed and tested for its binding affinity and neutralization activity. Interestingly, 8D6 iGL-mediated relatively strong inhibition of the 1b genotype PR79L9 strain, suggesting that PR79L9 may serve as a potential natural viral strain that provides E2 sequences that induce bNAbs. Overall, our detailed epitope mapping and genetic studies of the HCV E2-specific mAb 8D6 have allowed for further refinement of antigenic sites on E2 and reveal a new mechanism to generate a functional CDRH3, while its iGL can serve as a probe to identify potential HCV vaccine strains. Nature Publishing Group UK 2020-03-31 2021-03 /pmc/articles/PMC7222171/ /pubmed/32235917 http://dx.doi.org/10.1038/s41423-020-0403-1 Text en © CSI and USTC 2020 This article is made available via the PMC Open Access Subset for unrestricted research re-use and secondary analysis in any form or by any means with acknowledgement of the original source. These permissions are granted for the duration of the World Health Organization (WHO) declaration of COVID-19 as a global pandemic.
spellingShingle Article
Yi, Chunyan
Xia, Jing
He, Lan
Ling, Zhiyang
Wang, Xuesong
Yan, Yu
Wang, Jiangjun
Zhao, Xinhao
Fan, Weiguo
Sun, Xiaoyu
Zhang, Ronghua
Ye, Sheng
Zhang, Rongguang
Xu, Yongfen
Ma, Liyan
Zhang, Yaguang
Zhou, Honglin
Huang, Zhong
Niu, Junqi
Long, Gang
Lu, Junxia
Zhong, Jin
Sun, Bing
Junctional and somatic hypermutation-induced CX(4)C motif is critical for the recognition of a highly conserved epitope on HCV E2 by a human broadly neutralizing antibody
title Junctional and somatic hypermutation-induced CX(4)C motif is critical for the recognition of a highly conserved epitope on HCV E2 by a human broadly neutralizing antibody
title_full Junctional and somatic hypermutation-induced CX(4)C motif is critical for the recognition of a highly conserved epitope on HCV E2 by a human broadly neutralizing antibody
title_fullStr Junctional and somatic hypermutation-induced CX(4)C motif is critical for the recognition of a highly conserved epitope on HCV E2 by a human broadly neutralizing antibody
title_full_unstemmed Junctional and somatic hypermutation-induced CX(4)C motif is critical for the recognition of a highly conserved epitope on HCV E2 by a human broadly neutralizing antibody
title_short Junctional and somatic hypermutation-induced CX(4)C motif is critical for the recognition of a highly conserved epitope on HCV E2 by a human broadly neutralizing antibody
title_sort junctional and somatic hypermutation-induced cx(4)c motif is critical for the recognition of a highly conserved epitope on hcv e2 by a human broadly neutralizing antibody
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7222171/
https://www.ncbi.nlm.nih.gov/pubmed/32235917
http://dx.doi.org/10.1038/s41423-020-0403-1
work_keys_str_mv AT yichunyan junctionalandsomatichypermutationinducedcx4cmotifiscriticalfortherecognitionofahighlyconservedepitopeonhcve2byahumanbroadlyneutralizingantibody
AT xiajing junctionalandsomatichypermutationinducedcx4cmotifiscriticalfortherecognitionofahighlyconservedepitopeonhcve2byahumanbroadlyneutralizingantibody
AT helan junctionalandsomatichypermutationinducedcx4cmotifiscriticalfortherecognitionofahighlyconservedepitopeonhcve2byahumanbroadlyneutralizingantibody
AT lingzhiyang junctionalandsomatichypermutationinducedcx4cmotifiscriticalfortherecognitionofahighlyconservedepitopeonhcve2byahumanbroadlyneutralizingantibody
AT wangxuesong junctionalandsomatichypermutationinducedcx4cmotifiscriticalfortherecognitionofahighlyconservedepitopeonhcve2byahumanbroadlyneutralizingantibody
AT yanyu junctionalandsomatichypermutationinducedcx4cmotifiscriticalfortherecognitionofahighlyconservedepitopeonhcve2byahumanbroadlyneutralizingantibody
AT wangjiangjun junctionalandsomatichypermutationinducedcx4cmotifiscriticalfortherecognitionofahighlyconservedepitopeonhcve2byahumanbroadlyneutralizingantibody
AT zhaoxinhao junctionalandsomatichypermutationinducedcx4cmotifiscriticalfortherecognitionofahighlyconservedepitopeonhcve2byahumanbroadlyneutralizingantibody
AT fanweiguo junctionalandsomatichypermutationinducedcx4cmotifiscriticalfortherecognitionofahighlyconservedepitopeonhcve2byahumanbroadlyneutralizingantibody
AT sunxiaoyu junctionalandsomatichypermutationinducedcx4cmotifiscriticalfortherecognitionofahighlyconservedepitopeonhcve2byahumanbroadlyneutralizingantibody
AT zhangronghua junctionalandsomatichypermutationinducedcx4cmotifiscriticalfortherecognitionofahighlyconservedepitopeonhcve2byahumanbroadlyneutralizingantibody
AT yesheng junctionalandsomatichypermutationinducedcx4cmotifiscriticalfortherecognitionofahighlyconservedepitopeonhcve2byahumanbroadlyneutralizingantibody
AT zhangrongguang junctionalandsomatichypermutationinducedcx4cmotifiscriticalfortherecognitionofahighlyconservedepitopeonhcve2byahumanbroadlyneutralizingantibody
AT xuyongfen junctionalandsomatichypermutationinducedcx4cmotifiscriticalfortherecognitionofahighlyconservedepitopeonhcve2byahumanbroadlyneutralizingantibody
AT maliyan junctionalandsomatichypermutationinducedcx4cmotifiscriticalfortherecognitionofahighlyconservedepitopeonhcve2byahumanbroadlyneutralizingantibody
AT zhangyaguang junctionalandsomatichypermutationinducedcx4cmotifiscriticalfortherecognitionofahighlyconservedepitopeonhcve2byahumanbroadlyneutralizingantibody
AT zhouhonglin junctionalandsomatichypermutationinducedcx4cmotifiscriticalfortherecognitionofahighlyconservedepitopeonhcve2byahumanbroadlyneutralizingantibody
AT huangzhong junctionalandsomatichypermutationinducedcx4cmotifiscriticalfortherecognitionofahighlyconservedepitopeonhcve2byahumanbroadlyneutralizingantibody
AT niujunqi junctionalandsomatichypermutationinducedcx4cmotifiscriticalfortherecognitionofahighlyconservedepitopeonhcve2byahumanbroadlyneutralizingantibody
AT longgang junctionalandsomatichypermutationinducedcx4cmotifiscriticalfortherecognitionofahighlyconservedepitopeonhcve2byahumanbroadlyneutralizingantibody
AT lujunxia junctionalandsomatichypermutationinducedcx4cmotifiscriticalfortherecognitionofahighlyconservedepitopeonhcve2byahumanbroadlyneutralizingantibody
AT zhongjin junctionalandsomatichypermutationinducedcx4cmotifiscriticalfortherecognitionofahighlyconservedepitopeonhcve2byahumanbroadlyneutralizingantibody
AT sunbing junctionalandsomatichypermutationinducedcx4cmotifiscriticalfortherecognitionofahighlyconservedepitopeonhcve2byahumanbroadlyneutralizingantibody