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Development of a Reverse Genetics System for Toscana Virus (Lineage A)

Toscana virus (TOSV) is a Phlebovirus in the Phenuiviridae family, order Bunyavirales, found in the countries surrounding the Mediterranean. TOSV is an important cause of seasonal acute meningitis and encephalitis within its range. Here, we determined the full sequence of the TOSV strain 1500590, a...

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Autores principales: Alexander, Akira J. T., Confort, Marie-Pierre, Desloire, Sophie, Dunlop, James I., Kuchi, Srikeerthana, Sreenu, Vattipally B., Mair, Daniel, Wilkie, Gavin S., Da Silva Filipe, Ana, Brennan, Benjamin, Ratinier, Maxime, Arnaud, Frédérick, Kohl, Alain
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7232365/
https://www.ncbi.nlm.nih.gov/pubmed/32272808
http://dx.doi.org/10.3390/v12040411
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author Alexander, Akira J. T.
Confort, Marie-Pierre
Desloire, Sophie
Dunlop, James I.
Kuchi, Srikeerthana
Sreenu, Vattipally B.
Mair, Daniel
Wilkie, Gavin S.
Da Silva Filipe, Ana
Brennan, Benjamin
Ratinier, Maxime
Arnaud, Frédérick
Kohl, Alain
author_facet Alexander, Akira J. T.
Confort, Marie-Pierre
Desloire, Sophie
Dunlop, James I.
Kuchi, Srikeerthana
Sreenu, Vattipally B.
Mair, Daniel
Wilkie, Gavin S.
Da Silva Filipe, Ana
Brennan, Benjamin
Ratinier, Maxime
Arnaud, Frédérick
Kohl, Alain
author_sort Alexander, Akira J. T.
collection PubMed
description Toscana virus (TOSV) is a Phlebovirus in the Phenuiviridae family, order Bunyavirales, found in the countries surrounding the Mediterranean. TOSV is an important cause of seasonal acute meningitis and encephalitis within its range. Here, we determined the full sequence of the TOSV strain 1500590, a lineage A virus obtained from an infected patient (Marseille, 2007) and used this in combination with other sequence information to construct functional cDNA plasmids encoding the viral L, M, and S antigenomic sequences under the control of the T7 RNA promoter to recover recombinant viruses. Importantly, resequencing identified two single nucleotide changes to a TOSV reference genome, which, when corrected, restored functionality to the polymerase L and made it possible to recover infectious recombinant TOSV (rTOSV) from cDNA, as well as establish a minigenome system. Using reverse genetics, we produced an NSs-deletant rTOSV and also obtained viruses expressing reporter genes instead of NSs. The availability of such a system assists investigating questions that require genetic manipulation of the viral genome, such as investigations into replication and tropism, and beyond these fundamental aspects, also the development of novel vaccine design strategies.
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spelling pubmed-72323652020-05-22 Development of a Reverse Genetics System for Toscana Virus (Lineage A) Alexander, Akira J. T. Confort, Marie-Pierre Desloire, Sophie Dunlop, James I. Kuchi, Srikeerthana Sreenu, Vattipally B. Mair, Daniel Wilkie, Gavin S. Da Silva Filipe, Ana Brennan, Benjamin Ratinier, Maxime Arnaud, Frédérick Kohl, Alain Viruses Article Toscana virus (TOSV) is a Phlebovirus in the Phenuiviridae family, order Bunyavirales, found in the countries surrounding the Mediterranean. TOSV is an important cause of seasonal acute meningitis and encephalitis within its range. Here, we determined the full sequence of the TOSV strain 1500590, a lineage A virus obtained from an infected patient (Marseille, 2007) and used this in combination with other sequence information to construct functional cDNA plasmids encoding the viral L, M, and S antigenomic sequences under the control of the T7 RNA promoter to recover recombinant viruses. Importantly, resequencing identified two single nucleotide changes to a TOSV reference genome, which, when corrected, restored functionality to the polymerase L and made it possible to recover infectious recombinant TOSV (rTOSV) from cDNA, as well as establish a minigenome system. Using reverse genetics, we produced an NSs-deletant rTOSV and also obtained viruses expressing reporter genes instead of NSs. The availability of such a system assists investigating questions that require genetic manipulation of the viral genome, such as investigations into replication and tropism, and beyond these fundamental aspects, also the development of novel vaccine design strategies. MDPI 2020-04-07 /pmc/articles/PMC7232365/ /pubmed/32272808 http://dx.doi.org/10.3390/v12040411 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
Alexander, Akira J. T.
Confort, Marie-Pierre
Desloire, Sophie
Dunlop, James I.
Kuchi, Srikeerthana
Sreenu, Vattipally B.
Mair, Daniel
Wilkie, Gavin S.
Da Silva Filipe, Ana
Brennan, Benjamin
Ratinier, Maxime
Arnaud, Frédérick
Kohl, Alain
Development of a Reverse Genetics System for Toscana Virus (Lineage A)
title Development of a Reverse Genetics System for Toscana Virus (Lineage A)
title_full Development of a Reverse Genetics System for Toscana Virus (Lineage A)
title_fullStr Development of a Reverse Genetics System for Toscana Virus (Lineage A)
title_full_unstemmed Development of a Reverse Genetics System for Toscana Virus (Lineage A)
title_short Development of a Reverse Genetics System for Toscana Virus (Lineage A)
title_sort development of a reverse genetics system for toscana virus (lineage a)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7232365/
https://www.ncbi.nlm.nih.gov/pubmed/32272808
http://dx.doi.org/10.3390/v12040411
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