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Efficient Mutagenesis of Marek’s Disease Virus-Encoded microRNAs Using a CRISPR/Cas9-Based Gene Editing System

The virus-encoded microRNAs (miRNAs) have been demonstrated to have important regulatory roles in herpesvirus biology, including virus replication, latency, pathogenesis and/or tumorigenesis. As an emerging efficient tool for gene editing, the clustered regularly interspaced short palindromic repeat...

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Autores principales: Luo, Jun, Teng, Man, Zai, Xusheng, Tang, Na, Zhang, Yaoyao, Mandviwala, Ahmedali, Reddy, Vishwanatha R. A. P., Baigent, Susan, Yao, Yongxiu, Nair, Venugopal
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7232411/
https://www.ncbi.nlm.nih.gov/pubmed/32325942
http://dx.doi.org/10.3390/v12040466
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author Luo, Jun
Teng, Man
Zai, Xusheng
Tang, Na
Zhang, Yaoyao
Mandviwala, Ahmedali
Reddy, Vishwanatha R. A. P.
Baigent, Susan
Yao, Yongxiu
Nair, Venugopal
author_facet Luo, Jun
Teng, Man
Zai, Xusheng
Tang, Na
Zhang, Yaoyao
Mandviwala, Ahmedali
Reddy, Vishwanatha R. A. P.
Baigent, Susan
Yao, Yongxiu
Nair, Venugopal
author_sort Luo, Jun
collection PubMed
description The virus-encoded microRNAs (miRNAs) have been demonstrated to have important regulatory roles in herpesvirus biology, including virus replication, latency, pathogenesis and/or tumorigenesis. As an emerging efficient tool for gene editing, the clustered regularly interspaced short palindromic repeat (CRISPR)/Cas9 system has been successfully applied in manipulating the genomes of large DNA viruses. Herein, utilizing the CRISPR/Cas9 system with a double-guide RNAs transfection/virus infection strategy, we have established a new platform for mutagenesis of viral miRNAs encoded by the Marek’s disease virus serotype 1 (MDV-1), an oncogenic alphaherpesvirus that can induce rapid-onset T-cell lymphomas in chickens. A series of miRNA-knocked out (miR-KO) mutants with deletions of the Meq- or the mid-clustered miRNAs, namely RB-1B∆Meq-miRs, RB-1B∆M9-M2, RB-1B∆M4, RB-1B∆M9 and RB-1B∆M11, were generated from vvMDV strain RB-1B virus. Interestingly, mutagenesis of the targeted miRNAs showed changes in the in vitro virus growth kinetics, which is consistent with that of the in vivo proliferation curves of our previously reported GX0101 mutants produced by the bacterial artificial chromosome (BAC) clone and Rec E/T homologous recombination techniques. Our data demonstrate that the CRISPR/Cas9-based gene editing is a simple, efficient and relatively nondisruptive approach for manipulating the small non-coding genes from the genome of herpesvirus and will undoubtedly contribute significantly to the future progress in herpesvirus biology.
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spelling pubmed-72324112020-05-22 Efficient Mutagenesis of Marek’s Disease Virus-Encoded microRNAs Using a CRISPR/Cas9-Based Gene Editing System Luo, Jun Teng, Man Zai, Xusheng Tang, Na Zhang, Yaoyao Mandviwala, Ahmedali Reddy, Vishwanatha R. A. P. Baigent, Susan Yao, Yongxiu Nair, Venugopal Viruses Article The virus-encoded microRNAs (miRNAs) have been demonstrated to have important regulatory roles in herpesvirus biology, including virus replication, latency, pathogenesis and/or tumorigenesis. As an emerging efficient tool for gene editing, the clustered regularly interspaced short palindromic repeat (CRISPR)/Cas9 system has been successfully applied in manipulating the genomes of large DNA viruses. Herein, utilizing the CRISPR/Cas9 system with a double-guide RNAs transfection/virus infection strategy, we have established a new platform for mutagenesis of viral miRNAs encoded by the Marek’s disease virus serotype 1 (MDV-1), an oncogenic alphaherpesvirus that can induce rapid-onset T-cell lymphomas in chickens. A series of miRNA-knocked out (miR-KO) mutants with deletions of the Meq- or the mid-clustered miRNAs, namely RB-1B∆Meq-miRs, RB-1B∆M9-M2, RB-1B∆M4, RB-1B∆M9 and RB-1B∆M11, were generated from vvMDV strain RB-1B virus. Interestingly, mutagenesis of the targeted miRNAs showed changes in the in vitro virus growth kinetics, which is consistent with that of the in vivo proliferation curves of our previously reported GX0101 mutants produced by the bacterial artificial chromosome (BAC) clone and Rec E/T homologous recombination techniques. Our data demonstrate that the CRISPR/Cas9-based gene editing is a simple, efficient and relatively nondisruptive approach for manipulating the small non-coding genes from the genome of herpesvirus and will undoubtedly contribute significantly to the future progress in herpesvirus biology. MDPI 2020-04-20 /pmc/articles/PMC7232411/ /pubmed/32325942 http://dx.doi.org/10.3390/v12040466 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Luo, Jun
Teng, Man
Zai, Xusheng
Tang, Na
Zhang, Yaoyao
Mandviwala, Ahmedali
Reddy, Vishwanatha R. A. P.
Baigent, Susan
Yao, Yongxiu
Nair, Venugopal
Efficient Mutagenesis of Marek’s Disease Virus-Encoded microRNAs Using a CRISPR/Cas9-Based Gene Editing System
title Efficient Mutagenesis of Marek’s Disease Virus-Encoded microRNAs Using a CRISPR/Cas9-Based Gene Editing System
title_full Efficient Mutagenesis of Marek’s Disease Virus-Encoded microRNAs Using a CRISPR/Cas9-Based Gene Editing System
title_fullStr Efficient Mutagenesis of Marek’s Disease Virus-Encoded microRNAs Using a CRISPR/Cas9-Based Gene Editing System
title_full_unstemmed Efficient Mutagenesis of Marek’s Disease Virus-Encoded microRNAs Using a CRISPR/Cas9-Based Gene Editing System
title_short Efficient Mutagenesis of Marek’s Disease Virus-Encoded microRNAs Using a CRISPR/Cas9-Based Gene Editing System
title_sort efficient mutagenesis of marek’s disease virus-encoded micrornas using a crispr/cas9-based gene editing system
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7232411/
https://www.ncbi.nlm.nih.gov/pubmed/32325942
http://dx.doi.org/10.3390/v12040466
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