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FAdV-4 without Fiber-2 Is a Highly Attenuated and Protective Vaccine Candidate

Hepatitis-hydropericardium syndrome (HHS) caused by the highly pathogenic fowl adenovirus serotype 4 (FAdV-4) has resulted in huge economic losses to the poultry industry globally. The fiber-2 gene, as a major virulence determiner, is also an important vaccine target against FAdV-4. In this study, w...

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Autores principales: Xie, Quan, Wang, Weikang, Kan, Qiuqi, Mu, Yaru, Zhang, Wei, Chen, Jian, Li, Luyuan, Fu, Hui, Li, Tuofan, Wan, Zhimin, Gao, Wei, Shao, Hongxia, Qin, Aijian, Ye, Jianqiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8809343/
https://www.ncbi.nlm.nih.gov/pubmed/35107364
http://dx.doi.org/10.1128/spectrum.01436-21
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author Xie, Quan
Wang, Weikang
Kan, Qiuqi
Mu, Yaru
Zhang, Wei
Chen, Jian
Li, Luyuan
Fu, Hui
Li, Tuofan
Wan, Zhimin
Gao, Wei
Shao, Hongxia
Qin, Aijian
Ye, Jianqiang
author_facet Xie, Quan
Wang, Weikang
Kan, Qiuqi
Mu, Yaru
Zhang, Wei
Chen, Jian
Li, Luyuan
Fu, Hui
Li, Tuofan
Wan, Zhimin
Gao, Wei
Shao, Hongxia
Qin, Aijian
Ye, Jianqiang
author_sort Xie, Quan
collection PubMed
description Hepatitis-hydropericardium syndrome (HHS) caused by the highly pathogenic fowl adenovirus serotype 4 (FAdV-4) has resulted in huge economic losses to the poultry industry globally. The fiber-2 gene, as a major virulence determiner, is also an important vaccine target against FAdV-4. In this study, we used a CRISPR/Cas9-based homology-dependent recombinant technique to replace the fiber-2 gene with egfp and generate a novel recombinant virus, designated FAdV4-EGFP-rF2. Although FAdV4-EGFP-rF2 showed low replication ability compared to the wild-type FAdV-4 in LMH cells, FAdV4-EGFP-rF2 could effectively replicate in LMH-F2 cells with the expression of Fiber-2. Moreover, FAdV4-EGFP-rF2 was not only highly attenuated in chickens, but also could provide efficient protection against a lethal challenge of FAdV-4. Moreover, FAdV4-EGFP-rF2 without fiber-2 could induce neutralizing antibodies at the same level as FA4-EGFP with fiber-2. These results clearly demonstrate that although fiber-2 affects the viral replication and pathogenesis of FAdV-4, it is not necessary for virus replication and induction of neutralizing antibodies; these findings provide novel insights into the roles of fiber-2 and highlight fiber-2 as an insertion site for generating live-attenuated FAdV-4 vaccines against FAdV-4 and other pathogens. IMPORTANCE Among all serotypes of fowl adenovirus, serotypes FAdV-1, FAdV-4, and FAdV-10 are unique members with two fiber genes (fiber-1 and fiber-2). Recent studies reveal that Fiber-1, not Fiber-2, directly triggers viral infection of FAdV-4, whereas Fiber-2, but not Fiber-1, has been identified as the major virulence determiner and an efficient protective immunogen for subunit vaccines. Here, we replaced fiber-2 with egfp to generate a novel recombinant virus, designated FAdV4-EGFP-rF2. In vitro and in vivo studies on FAdV4-EGFP-rF2 revealed that fiber-2 was not necessary for either virus replication or efficient protection for FAdV-4; these results not only provide a novel live-attenuated vaccine candidate against HHS, but also give new ideas for generating a FAdV-4 based vaccine vector against other pathogens.
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spelling pubmed-88093432022-02-09 FAdV-4 without Fiber-2 Is a Highly Attenuated and Protective Vaccine Candidate Xie, Quan Wang, Weikang Kan, Qiuqi Mu, Yaru Zhang, Wei Chen, Jian Li, Luyuan Fu, Hui Li, Tuofan Wan, Zhimin Gao, Wei Shao, Hongxia Qin, Aijian Ye, Jianqiang Microbiol Spectr Research Article Hepatitis-hydropericardium syndrome (HHS) caused by the highly pathogenic fowl adenovirus serotype 4 (FAdV-4) has resulted in huge economic losses to the poultry industry globally. The fiber-2 gene, as a major virulence determiner, is also an important vaccine target against FAdV-4. In this study, we used a CRISPR/Cas9-based homology-dependent recombinant technique to replace the fiber-2 gene with egfp and generate a novel recombinant virus, designated FAdV4-EGFP-rF2. Although FAdV4-EGFP-rF2 showed low replication ability compared to the wild-type FAdV-4 in LMH cells, FAdV4-EGFP-rF2 could effectively replicate in LMH-F2 cells with the expression of Fiber-2. Moreover, FAdV4-EGFP-rF2 was not only highly attenuated in chickens, but also could provide efficient protection against a lethal challenge of FAdV-4. Moreover, FAdV4-EGFP-rF2 without fiber-2 could induce neutralizing antibodies at the same level as FA4-EGFP with fiber-2. These results clearly demonstrate that although fiber-2 affects the viral replication and pathogenesis of FAdV-4, it is not necessary for virus replication and induction of neutralizing antibodies; these findings provide novel insights into the roles of fiber-2 and highlight fiber-2 as an insertion site for generating live-attenuated FAdV-4 vaccines against FAdV-4 and other pathogens. IMPORTANCE Among all serotypes of fowl adenovirus, serotypes FAdV-1, FAdV-4, and FAdV-10 are unique members with two fiber genes (fiber-1 and fiber-2). Recent studies reveal that Fiber-1, not Fiber-2, directly triggers viral infection of FAdV-4, whereas Fiber-2, but not Fiber-1, has been identified as the major virulence determiner and an efficient protective immunogen for subunit vaccines. Here, we replaced fiber-2 with egfp to generate a novel recombinant virus, designated FAdV4-EGFP-rF2. In vitro and in vivo studies on FAdV4-EGFP-rF2 revealed that fiber-2 was not necessary for either virus replication or efficient protection for FAdV-4; these results not only provide a novel live-attenuated vaccine candidate against HHS, but also give new ideas for generating a FAdV-4 based vaccine vector against other pathogens. American Society for Microbiology 2022-02-02 /pmc/articles/PMC8809343/ /pubmed/35107364 http://dx.doi.org/10.1128/spectrum.01436-21 Text en Copyright © 2022 Xie et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Xie, Quan
Wang, Weikang
Kan, Qiuqi
Mu, Yaru
Zhang, Wei
Chen, Jian
Li, Luyuan
Fu, Hui
Li, Tuofan
Wan, Zhimin
Gao, Wei
Shao, Hongxia
Qin, Aijian
Ye, Jianqiang
FAdV-4 without Fiber-2 Is a Highly Attenuated and Protective Vaccine Candidate
title FAdV-4 without Fiber-2 Is a Highly Attenuated and Protective Vaccine Candidate
title_full FAdV-4 without Fiber-2 Is a Highly Attenuated and Protective Vaccine Candidate
title_fullStr FAdV-4 without Fiber-2 Is a Highly Attenuated and Protective Vaccine Candidate
title_full_unstemmed FAdV-4 without Fiber-2 Is a Highly Attenuated and Protective Vaccine Candidate
title_short FAdV-4 without Fiber-2 Is a Highly Attenuated and Protective Vaccine Candidate
title_sort fadv-4 without fiber-2 is a highly attenuated and protective vaccine candidate
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8809343/
https://www.ncbi.nlm.nih.gov/pubmed/35107364
http://dx.doi.org/10.1128/spectrum.01436-21
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