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Construction and characterization of a full-length infectious clone of Getah virus in vivo

Getah virus (GETV) is a mosquito-borne virus of the genus Alphavirus in the family Togaviridae and, in recent years, it has caused several outbreaks in animals. The molecular basis for GETV pathogenicity is not well understood. Therefore, a reverse genetic system of GETV is needed to produce genetic...

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Autores principales: Ren, Tongwei, Min, Xiangling, Mo, Qingrong, Wang, Yuxu, Wang, Hao, Chen, Ying, Ouyang, Kang, Huang, Weijian, Wei, Zuzhang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wuhan Institute of Virology, Chinese Academy of Sciences 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9243596/
https://www.ncbi.nlm.nih.gov/pubmed/35288349
http://dx.doi.org/10.1016/j.virs.2022.03.007
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author Ren, Tongwei
Min, Xiangling
Mo, Qingrong
Wang, Yuxu
Wang, Hao
Chen, Ying
Ouyang, Kang
Huang, Weijian
Wei, Zuzhang
author_facet Ren, Tongwei
Min, Xiangling
Mo, Qingrong
Wang, Yuxu
Wang, Hao
Chen, Ying
Ouyang, Kang
Huang, Weijian
Wei, Zuzhang
author_sort Ren, Tongwei
collection PubMed
description Getah virus (GETV) is a mosquito-borne virus of the genus Alphavirus in the family Togaviridae and, in recent years, it has caused several outbreaks in animals. The molecular basis for GETV pathogenicity is not well understood. Therefore, a reverse genetic system of GETV is needed to produce genetically modified viruses for the study of the viral replication and its pathogenic mechanism. Here, we generated a CMV-driven infectious cDNA clone based on a previously isolated GETV strain, GX201808 (pGETV-GX). Transfection of pGETV-GX into BHK-21 ​cells resulted in the recovery of a recombinant virus (rGETV-GX) which showed similar growth characteristics to its parental virus. Then three-day-old mice were experimentally infected with either the parental or recombinant virus. The recombinant virus showed milder pathogenicity than the parental virus in the mice. Based on the established CMV-driven cDNA clone, subgenomic promoter and two restriction enzyme sites (BamHI and EcoRI) were introduced into the region between E1 protein and 3′UTR. Then the green fluorescent protein (GFP), red fluorescent protein (RFP) and improved light-oxygen-voltage (iLOV) genes were inserted into the restriction enzyme sites. Transfection of the constructs carrying the reporter genes into BHK-21 ​cells proved the rescue of the recombinant reporter viruses. Taken together, the establishment of a reverse genetic system for GETV provides a valuable tool for the study of the virus life cycle, and to aid the development of genetically engineered GETVs as vectors for foreign gene expression.
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spelling pubmed-92435962022-07-01 Construction and characterization of a full-length infectious clone of Getah virus in vivo Ren, Tongwei Min, Xiangling Mo, Qingrong Wang, Yuxu Wang, Hao Chen, Ying Ouyang, Kang Huang, Weijian Wei, Zuzhang Virol Sin Research Article Getah virus (GETV) is a mosquito-borne virus of the genus Alphavirus in the family Togaviridae and, in recent years, it has caused several outbreaks in animals. The molecular basis for GETV pathogenicity is not well understood. Therefore, a reverse genetic system of GETV is needed to produce genetically modified viruses for the study of the viral replication and its pathogenic mechanism. Here, we generated a CMV-driven infectious cDNA clone based on a previously isolated GETV strain, GX201808 (pGETV-GX). Transfection of pGETV-GX into BHK-21 ​cells resulted in the recovery of a recombinant virus (rGETV-GX) which showed similar growth characteristics to its parental virus. Then three-day-old mice were experimentally infected with either the parental or recombinant virus. The recombinant virus showed milder pathogenicity than the parental virus in the mice. Based on the established CMV-driven cDNA clone, subgenomic promoter and two restriction enzyme sites (BamHI and EcoRI) were introduced into the region between E1 protein and 3′UTR. Then the green fluorescent protein (GFP), red fluorescent protein (RFP) and improved light-oxygen-voltage (iLOV) genes were inserted into the restriction enzyme sites. Transfection of the constructs carrying the reporter genes into BHK-21 ​cells proved the rescue of the recombinant reporter viruses. Taken together, the establishment of a reverse genetic system for GETV provides a valuable tool for the study of the virus life cycle, and to aid the development of genetically engineered GETVs as vectors for foreign gene expression. Wuhan Institute of Virology, Chinese Academy of Sciences 2022-03-11 /pmc/articles/PMC9243596/ /pubmed/35288349 http://dx.doi.org/10.1016/j.virs.2022.03.007 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Ren, Tongwei
Min, Xiangling
Mo, Qingrong
Wang, Yuxu
Wang, Hao
Chen, Ying
Ouyang, Kang
Huang, Weijian
Wei, Zuzhang
Construction and characterization of a full-length infectious clone of Getah virus in vivo
title Construction and characterization of a full-length infectious clone of Getah virus in vivo
title_full Construction and characterization of a full-length infectious clone of Getah virus in vivo
title_fullStr Construction and characterization of a full-length infectious clone of Getah virus in vivo
title_full_unstemmed Construction and characterization of a full-length infectious clone of Getah virus in vivo
title_short Construction and characterization of a full-length infectious clone of Getah virus in vivo
title_sort construction and characterization of a full-length infectious clone of getah virus in vivo
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9243596/
https://www.ncbi.nlm.nih.gov/pubmed/35288349
http://dx.doi.org/10.1016/j.virs.2022.03.007
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