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Structure of the Triatoma virus capsid

The members of the Dicistroviridae family are non-enveloped positive-sense single-stranded RNA (+ssRNA) viruses pathogenic to beneficial arthropods as well as insect pests of medical importance. Triatoma virus (TrV), a member of this family, infects several species of triatomine insects (popularly n...

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Autores principales: Squires, Gaëlle, Pous, Joan, Agirre, Jon, Rozas-Dennis, Gabriela S., Costabel, Marcelo D., Marti, Gerardo A., Navaza, Jorge, Bressanelli, Stéphane, Guérin, Diego M. A., Rey, Felix A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3663122/
https://www.ncbi.nlm.nih.gov/pubmed/23695247
http://dx.doi.org/10.1107/S0907444913004617
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author Squires, Gaëlle
Pous, Joan
Agirre, Jon
Rozas-Dennis, Gabriela S.
Costabel, Marcelo D.
Marti, Gerardo A.
Navaza, Jorge
Bressanelli, Stéphane
Guérin, Diego M. A.
Rey, Felix A.
author_facet Squires, Gaëlle
Pous, Joan
Agirre, Jon
Rozas-Dennis, Gabriela S.
Costabel, Marcelo D.
Marti, Gerardo A.
Navaza, Jorge
Bressanelli, Stéphane
Guérin, Diego M. A.
Rey, Felix A.
author_sort Squires, Gaëlle
collection PubMed
description The members of the Dicistroviridae family are non-enveloped positive-sense single-stranded RNA (+ssRNA) viruses pathogenic to beneficial arthropods as well as insect pests of medical importance. Triatoma virus (TrV), a member of this family, infects several species of triatomine insects (popularly named kissing bugs), which are vectors for human trypanosomiasis, more commonly known as Chagas disease. The potential use of dicistroviruses as biological control agents has drawn considerable attention in the past decade, and several viruses of this family have been identified, with their targets covering honey bees, aphids and field crickets, among others. Here, the crystal structure of the TrV capsid at 2.5 Å resolution is reported, showing that as expected it is very similar to that of Cricket paralysis virus (CrPV). Nevertheless, a number of distinguishing structural features support the introduction of a new genus (Triatovirus; type species TrV) under the Dicistroviridae family. The most striking differences are the absence of icosahedrally ordered VP4 within the infectious particle and the presence of prominent projections that surround the fivefold axis. Furthermore, the structure identifies a second putative autoproteolytic DDF motif in protein VP3, in addition to the conserved one in VP1 which is believed to be responsible for VP0 cleavage during capsid maturation. The potential meaning of these new findings is discussed.
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spelling pubmed-36631222013-05-28 Structure of the Triatoma virus capsid Squires, Gaëlle Pous, Joan Agirre, Jon Rozas-Dennis, Gabriela S. Costabel, Marcelo D. Marti, Gerardo A. Navaza, Jorge Bressanelli, Stéphane Guérin, Diego M. A. Rey, Felix A. Acta Crystallogr D Biol Crystallogr Research Papers The members of the Dicistroviridae family are non-enveloped positive-sense single-stranded RNA (+ssRNA) viruses pathogenic to beneficial arthropods as well as insect pests of medical importance. Triatoma virus (TrV), a member of this family, infects several species of triatomine insects (popularly named kissing bugs), which are vectors for human trypanosomiasis, more commonly known as Chagas disease. The potential use of dicistroviruses as biological control agents has drawn considerable attention in the past decade, and several viruses of this family have been identified, with their targets covering honey bees, aphids and field crickets, among others. Here, the crystal structure of the TrV capsid at 2.5 Å resolution is reported, showing that as expected it is very similar to that of Cricket paralysis virus (CrPV). Nevertheless, a number of distinguishing structural features support the introduction of a new genus (Triatovirus; type species TrV) under the Dicistroviridae family. The most striking differences are the absence of icosahedrally ordered VP4 within the infectious particle and the presence of prominent projections that surround the fivefold axis. Furthermore, the structure identifies a second putative autoproteolytic DDF motif in protein VP3, in addition to the conserved one in VP1 which is believed to be responsible for VP0 cleavage during capsid maturation. The potential meaning of these new findings is discussed. International Union of Crystallography 2013-05-14 /pmc/articles/PMC3663122/ /pubmed/23695247 http://dx.doi.org/10.1107/S0907444913004617 Text en © Squires et al. 2013 http://creativecommons.org/licenses/by/2.0/uk/ This is an open-access article distributed under the terms of the Creative Commons Attribution Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.
spellingShingle Research Papers
Squires, Gaëlle
Pous, Joan
Agirre, Jon
Rozas-Dennis, Gabriela S.
Costabel, Marcelo D.
Marti, Gerardo A.
Navaza, Jorge
Bressanelli, Stéphane
Guérin, Diego M. A.
Rey, Felix A.
Structure of the Triatoma virus capsid
title Structure of the Triatoma virus capsid
title_full Structure of the Triatoma virus capsid
title_fullStr Structure of the Triatoma virus capsid
title_full_unstemmed Structure of the Triatoma virus capsid
title_short Structure of the Triatoma virus capsid
title_sort structure of the triatoma virus capsid
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3663122/
https://www.ncbi.nlm.nih.gov/pubmed/23695247
http://dx.doi.org/10.1107/S0907444913004617
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