Novel toscana virus reverse genetics system establishes NSS as an antagonist of type I interferon responses

The sand fly-borne Toscana virus (TOSV) is the major cause of human meningoencephalitis in the Mediterranean basin during the summer season. In this work, we have developed a T7 RNA polymerase-driven reverse genetics system to recover infectious particles of a lineage B strain of TOSV. The viral protein pattern and growth properties of the rescued virus (rTOSV) were found to be similar to those of the corresponding wild-type (wt) virus. Using this system, we genetically engineered a TOSV mutant lacking expression of the non-structural protein NSs (rTOSVϕNSs). Unlike rTOSV and the wt virus, rTOSVϕNSs was unable to (i) suppress interferon (IFN)-b messenger RNA induction; and (ii) grow efficiently in cells producing IFN-b. Together, our results highlight the importance of NSs for TOSV in evading the IFN response and provide a comprehensive toolbox to investigate the TOSV life cycle in mammalian and insect host cells, including several novel polyclonal antibodies.

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Main Authors: Woelfl, Franziska, Léger, Psylvia, Oreshkova, Nadia, Pahmeier, Felix, Windhaber, Stefan, Koch, Jana, Stanifer, Megan, Sosa, Gleyder Roman, Uckeley, Zina M., Rey, Felix A., Boulant, Steeve, Kortekaas, Jeroen, Wichgers Schreur, Paul J., Lozach, Pierre Yves
Format: Article/Letter to editor biblioteca
Language:English
Subjects:Arbovirus, Bunyavirales, Interferon, Neglected diseases, Phenuiviridae, Phlebovirus, Reverse genetics, Sand fly fever, Toscana virus,
Online Access:https://research.wur.nl/en/publications/novel-toscana-virus-reverse-genetics-system-establishes-nss-as-an
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spelling dig-wur-nl-wurpubs-5638392024-12-04 Woelfl, Franziska Léger, Psylvia Oreshkova, Nadia Pahmeier, Felix Windhaber, Stefan Koch, Jana Stanifer, Megan Sosa, Gleyder Roman Uckeley, Zina M. Rey, Felix A. Boulant, Steeve Kortekaas, Jeroen Wichgers Schreur, Paul J. Lozach, Pierre Yves Article/Letter to editor Viruses 12 (2020) 4 ISSN: 1999-4915 Novel toscana virus reverse genetics system establishes NSS as an antagonist of type I interferon responses 2020 The sand fly-borne Toscana virus (TOSV) is the major cause of human meningoencephalitis in the Mediterranean basin during the summer season. In this work, we have developed a T7 RNA polymerase-driven reverse genetics system to recover infectious particles of a lineage B strain of TOSV. The viral protein pattern and growth properties of the rescued virus (rTOSV) were found to be similar to those of the corresponding wild-type (wt) virus. Using this system, we genetically engineered a TOSV mutant lacking expression of the non-structural protein NSs (rTOSVϕNSs). Unlike rTOSV and the wt virus, rTOSVϕNSs was unable to (i) suppress interferon (IFN)-b messenger RNA induction; and (ii) grow efficiently in cells producing IFN-b. Together, our results highlight the importance of NSs for TOSV in evading the IFN response and provide a comprehensive toolbox to investigate the TOSV life cycle in mammalian and insect host cells, including several novel polyclonal antibodies. en application/pdf https://research.wur.nl/en/publications/novel-toscana-virus-reverse-genetics-system-establishes-nss-as-an 10.3390/v12040400 https://edepot.wur.nl/521060 Arbovirus Bunyavirales Interferon Neglected diseases Phenuiviridae Phlebovirus Reverse genetics Sand fly fever Toscana virus https://creativecommons.org/licenses/by/4.0/ https://creativecommons.org/licenses/by/4.0/ Wageningen University & Research
institution WUR NL
collection DSpace
country Países bajos
countrycode NL
component Bibliográfico
access En linea
databasecode dig-wur-nl
tag biblioteca
region Europa del Oeste
libraryname WUR Library Netherlands
language English
topic Arbovirus
Bunyavirales
Interferon
Neglected diseases
Phenuiviridae
Phlebovirus
Reverse genetics
Sand fly fever
Toscana virus
Arbovirus
Bunyavirales
Interferon
Neglected diseases
Phenuiviridae
Phlebovirus
Reverse genetics
Sand fly fever
Toscana virus
spellingShingle Arbovirus
Bunyavirales
Interferon
Neglected diseases
Phenuiviridae
Phlebovirus
Reverse genetics
Sand fly fever
Toscana virus
Arbovirus
Bunyavirales
Interferon
Neglected diseases
Phenuiviridae
Phlebovirus
Reverse genetics
Sand fly fever
Toscana virus
Woelfl, Franziska
Léger, Psylvia
Oreshkova, Nadia
Pahmeier, Felix
Windhaber, Stefan
Koch, Jana
Stanifer, Megan
Sosa, Gleyder Roman
Uckeley, Zina M.
Rey, Felix A.
Boulant, Steeve
Kortekaas, Jeroen
Wichgers Schreur, Paul J.
Lozach, Pierre Yves
Novel toscana virus reverse genetics system establishes NSS as an antagonist of type I interferon responses
description The sand fly-borne Toscana virus (TOSV) is the major cause of human meningoencephalitis in the Mediterranean basin during the summer season. In this work, we have developed a T7 RNA polymerase-driven reverse genetics system to recover infectious particles of a lineage B strain of TOSV. The viral protein pattern and growth properties of the rescued virus (rTOSV) were found to be similar to those of the corresponding wild-type (wt) virus. Using this system, we genetically engineered a TOSV mutant lacking expression of the non-structural protein NSs (rTOSVϕNSs). Unlike rTOSV and the wt virus, rTOSVϕNSs was unable to (i) suppress interferon (IFN)-b messenger RNA induction; and (ii) grow efficiently in cells producing IFN-b. Together, our results highlight the importance of NSs for TOSV in evading the IFN response and provide a comprehensive toolbox to investigate the TOSV life cycle in mammalian and insect host cells, including several novel polyclonal antibodies.
format Article/Letter to editor
topic_facet Arbovirus
Bunyavirales
Interferon
Neglected diseases
Phenuiviridae
Phlebovirus
Reverse genetics
Sand fly fever
Toscana virus
author Woelfl, Franziska
Léger, Psylvia
Oreshkova, Nadia
Pahmeier, Felix
Windhaber, Stefan
Koch, Jana
Stanifer, Megan
Sosa, Gleyder Roman
Uckeley, Zina M.
Rey, Felix A.
Boulant, Steeve
Kortekaas, Jeroen
Wichgers Schreur, Paul J.
Lozach, Pierre Yves
author_facet Woelfl, Franziska
Léger, Psylvia
Oreshkova, Nadia
Pahmeier, Felix
Windhaber, Stefan
Koch, Jana
Stanifer, Megan
Sosa, Gleyder Roman
Uckeley, Zina M.
Rey, Felix A.
Boulant, Steeve
Kortekaas, Jeroen
Wichgers Schreur, Paul J.
Lozach, Pierre Yves
author_sort Woelfl, Franziska
title Novel toscana virus reverse genetics system establishes NSS as an antagonist of type I interferon responses
title_short Novel toscana virus reverse genetics system establishes NSS as an antagonist of type I interferon responses
title_full Novel toscana virus reverse genetics system establishes NSS as an antagonist of type I interferon responses
title_fullStr Novel toscana virus reverse genetics system establishes NSS as an antagonist of type I interferon responses
title_full_unstemmed Novel toscana virus reverse genetics system establishes NSS as an antagonist of type I interferon responses
title_sort novel toscana virus reverse genetics system establishes nss as an antagonist of type i interferon responses
url https://research.wur.nl/en/publications/novel-toscana-virus-reverse-genetics-system-establishes-nss-as-an
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