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Construction of an Influenza D Virus with an Eight-Segmented Genome

Influenza D virus (IDV) may cause the bovine respiratory disease complex, which is the most common and costly disease affecting the cattle industry. Previously, we revealed that eight segments could be actively packaged in its single virion, suggesting that IDV with the seven-segmented genome shows...

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Autores principales: Ishida, Hiroho, Murakami, Shin, Kamiki, Haruhiko, Matsugo, Hiromichi, Katayama, Misa, Sekine, Wataru, Ohira, Kosuke, Takenaka-Uema, Akiko, Horimoto, Taisuke
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8619389/
https://www.ncbi.nlm.nih.gov/pubmed/34834971
http://dx.doi.org/10.3390/v13112166
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author Ishida, Hiroho
Murakami, Shin
Kamiki, Haruhiko
Matsugo, Hiromichi
Katayama, Misa
Sekine, Wataru
Ohira, Kosuke
Takenaka-Uema, Akiko
Horimoto, Taisuke
author_facet Ishida, Hiroho
Murakami, Shin
Kamiki, Haruhiko
Matsugo, Hiromichi
Katayama, Misa
Sekine, Wataru
Ohira, Kosuke
Takenaka-Uema, Akiko
Horimoto, Taisuke
author_sort Ishida, Hiroho
collection PubMed
description Influenza D virus (IDV) may cause the bovine respiratory disease complex, which is the most common and costly disease affecting the cattle industry. Previously, we revealed that eight segments could be actively packaged in its single virion, suggesting that IDV with the seven-segmented genome shows an agnostic genome packaging mechanism. Herein, we engineered an eight-segmented recombinant IDV in which the NS1 or NS2 genes were separated from NS segment into independent segments (NS1 or NS2 segments, respectively), leading to monocistronic translation of each NS protein. We constructed two plasmids: one for the viral RNA (vRNA)-synthesis of the NS1 segment with a silent mutation at the splicing acceptor site, which controls NS2 transcription in the NS segment; and another for the RNA synthesis of the NS2 segment, with deletion of the intron in the NS segment. These plasmids and six other vRNA-synthesis plasmids were used to fabricate an infectious eight-segmented IDV via reverse genetics. This system enables analysis of the functions of NS1 or NS2. We tested the requirement of the N-terminal overlapping region (NOR) in these proteins for viral infectivity. We rescued a virus with NOR-deleted NS2 protein, which displayed a growth rate equivalent to that of the eight-segmented virus with intact NS2. Thus, the NOR may not influence viral growth. In contrast, a virus with NOR-deleted NS1 protein could not be rescued. These results indicate that the eight-segmented rescue system of IDV may provide an alternative method to analyze viral proteins at the molecular level.
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spelling pubmed-86193892021-11-27 Construction of an Influenza D Virus with an Eight-Segmented Genome Ishida, Hiroho Murakami, Shin Kamiki, Haruhiko Matsugo, Hiromichi Katayama, Misa Sekine, Wataru Ohira, Kosuke Takenaka-Uema, Akiko Horimoto, Taisuke Viruses Article Influenza D virus (IDV) may cause the bovine respiratory disease complex, which is the most common and costly disease affecting the cattle industry. Previously, we revealed that eight segments could be actively packaged in its single virion, suggesting that IDV with the seven-segmented genome shows an agnostic genome packaging mechanism. Herein, we engineered an eight-segmented recombinant IDV in which the NS1 or NS2 genes were separated from NS segment into independent segments (NS1 or NS2 segments, respectively), leading to monocistronic translation of each NS protein. We constructed two plasmids: one for the viral RNA (vRNA)-synthesis of the NS1 segment with a silent mutation at the splicing acceptor site, which controls NS2 transcription in the NS segment; and another for the RNA synthesis of the NS2 segment, with deletion of the intron in the NS segment. These plasmids and six other vRNA-synthesis plasmids were used to fabricate an infectious eight-segmented IDV via reverse genetics. This system enables analysis of the functions of NS1 or NS2. We tested the requirement of the N-terminal overlapping region (NOR) in these proteins for viral infectivity. We rescued a virus with NOR-deleted NS2 protein, which displayed a growth rate equivalent to that of the eight-segmented virus with intact NS2. Thus, the NOR may not influence viral growth. In contrast, a virus with NOR-deleted NS1 protein could not be rescued. These results indicate that the eight-segmented rescue system of IDV may provide an alternative method to analyze viral proteins at the molecular level. MDPI 2021-10-27 /pmc/articles/PMC8619389/ /pubmed/34834971 http://dx.doi.org/10.3390/v13112166 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ishida, Hiroho
Murakami, Shin
Kamiki, Haruhiko
Matsugo, Hiromichi
Katayama, Misa
Sekine, Wataru
Ohira, Kosuke
Takenaka-Uema, Akiko
Horimoto, Taisuke
Construction of an Influenza D Virus with an Eight-Segmented Genome
title Construction of an Influenza D Virus with an Eight-Segmented Genome
title_full Construction of an Influenza D Virus with an Eight-Segmented Genome
title_fullStr Construction of an Influenza D Virus with an Eight-Segmented Genome
title_full_unstemmed Construction of an Influenza D Virus with an Eight-Segmented Genome
title_short Construction of an Influenza D Virus with an Eight-Segmented Genome
title_sort construction of an influenza d virus with an eight-segmented genome
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8619389/
https://www.ncbi.nlm.nih.gov/pubmed/34834971
http://dx.doi.org/10.3390/v13112166
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