Cargando…

Acquisition of functions on the outer capsid surface during evolution of double-stranded RNA fungal viruses

Unlike their counterparts in bacterial and higher eukaryotic hosts, most fungal viruses are transmitted intracellularly and lack an extracellular phase. Here we determined the cryo-EM structure at 3.7 Å resolution of Rosellinia necatrix quadrivirus 1 (RnQV1), a fungal double-stranded (ds)RNA virus....

Descripción completa

Detalles Bibliográficos
Autores principales: Mata, Carlos P., Luque, Daniel, Gómez-Blanco, Josué, Rodríguez, Javier M., González, José M., Suzuki, Nobuhiro, Ghabrial, Said A., Carrascosa, José L., Trus, Benes L., Castón, José R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5738138/
https://www.ncbi.nlm.nih.gov/pubmed/29220409
http://dx.doi.org/10.1371/journal.ppat.1006755
_version_ 1783287640373592064
author Mata, Carlos P.
Luque, Daniel
Gómez-Blanco, Josué
Rodríguez, Javier M.
González, José M.
Suzuki, Nobuhiro
Ghabrial, Said A.
Carrascosa, José L.
Trus, Benes L.
Castón, José R.
author_facet Mata, Carlos P.
Luque, Daniel
Gómez-Blanco, Josué
Rodríguez, Javier M.
González, José M.
Suzuki, Nobuhiro
Ghabrial, Said A.
Carrascosa, José L.
Trus, Benes L.
Castón, José R.
author_sort Mata, Carlos P.
collection PubMed
description Unlike their counterparts in bacterial and higher eukaryotic hosts, most fungal viruses are transmitted intracellularly and lack an extracellular phase. Here we determined the cryo-EM structure at 3.7 Å resolution of Rosellinia necatrix quadrivirus 1 (RnQV1), a fungal double-stranded (ds)RNA virus. RnQV1, the type species of the family Quadriviridae, has a multipartite genome consisting of four monocistronic segments. Whereas most dsRNA virus capsids are based on dimers of a single protein, the ~450-Å-diameter, T = 1 RnQV1 capsid is built of P2 and P4 protein heterodimers, each with more than 1000 residues. Despite a lack of sequence similarity between the two proteins, they have a similar α-helical domain, the structural signature shared with the lineage of the dsRNA bluetongue virus-like viruses. Domain insertions in P2 and P4 preferential sites provide additional functions at the capsid outer surface, probably related to enzyme activity. The P2 insertion has a fold similar to that of gelsolin and profilin, two actin-binding proteins with a function in cytoskeleton metabolism, whereas the P4 insertion suggests protease activity involved in cleavage of the P2 383-residue C-terminal region, absent in the mature viral particle. Our results indicate that the intimate virus-fungus partnership has altered the capsid genome-protective and/or receptor-binding functions. Fungal virus evolution has tended to allocate enzyme activities to the virus capsid outer surface.
format Online
Article
Text
id pubmed-5738138
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-57381382017-12-29 Acquisition of functions on the outer capsid surface during evolution of double-stranded RNA fungal viruses Mata, Carlos P. Luque, Daniel Gómez-Blanco, Josué Rodríguez, Javier M. González, José M. Suzuki, Nobuhiro Ghabrial, Said A. Carrascosa, José L. Trus, Benes L. Castón, José R. PLoS Pathog Research Article Unlike their counterparts in bacterial and higher eukaryotic hosts, most fungal viruses are transmitted intracellularly and lack an extracellular phase. Here we determined the cryo-EM structure at 3.7 Å resolution of Rosellinia necatrix quadrivirus 1 (RnQV1), a fungal double-stranded (ds)RNA virus. RnQV1, the type species of the family Quadriviridae, has a multipartite genome consisting of four monocistronic segments. Whereas most dsRNA virus capsids are based on dimers of a single protein, the ~450-Å-diameter, T = 1 RnQV1 capsid is built of P2 and P4 protein heterodimers, each with more than 1000 residues. Despite a lack of sequence similarity between the two proteins, they have a similar α-helical domain, the structural signature shared with the lineage of the dsRNA bluetongue virus-like viruses. Domain insertions in P2 and P4 preferential sites provide additional functions at the capsid outer surface, probably related to enzyme activity. The P2 insertion has a fold similar to that of gelsolin and profilin, two actin-binding proteins with a function in cytoskeleton metabolism, whereas the P4 insertion suggests protease activity involved in cleavage of the P2 383-residue C-terminal region, absent in the mature viral particle. Our results indicate that the intimate virus-fungus partnership has altered the capsid genome-protective and/or receptor-binding functions. Fungal virus evolution has tended to allocate enzyme activities to the virus capsid outer surface. Public Library of Science 2017-12-08 /pmc/articles/PMC5738138/ /pubmed/29220409 http://dx.doi.org/10.1371/journal.ppat.1006755 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Mata, Carlos P.
Luque, Daniel
Gómez-Blanco, Josué
Rodríguez, Javier M.
González, José M.
Suzuki, Nobuhiro
Ghabrial, Said A.
Carrascosa, José L.
Trus, Benes L.
Castón, José R.
Acquisition of functions on the outer capsid surface during evolution of double-stranded RNA fungal viruses
title Acquisition of functions on the outer capsid surface during evolution of double-stranded RNA fungal viruses
title_full Acquisition of functions on the outer capsid surface during evolution of double-stranded RNA fungal viruses
title_fullStr Acquisition of functions on the outer capsid surface during evolution of double-stranded RNA fungal viruses
title_full_unstemmed Acquisition of functions on the outer capsid surface during evolution of double-stranded RNA fungal viruses
title_short Acquisition of functions on the outer capsid surface during evolution of double-stranded RNA fungal viruses
title_sort acquisition of functions on the outer capsid surface during evolution of double-stranded rna fungal viruses
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5738138/
https://www.ncbi.nlm.nih.gov/pubmed/29220409
http://dx.doi.org/10.1371/journal.ppat.1006755
work_keys_str_mv AT matacarlosp acquisitionoffunctionsontheoutercapsidsurfaceduringevolutionofdoublestrandedrnafungalviruses
AT luquedaniel acquisitionoffunctionsontheoutercapsidsurfaceduringevolutionofdoublestrandedrnafungalviruses
AT gomezblancojosue acquisitionoffunctionsontheoutercapsidsurfaceduringevolutionofdoublestrandedrnafungalviruses
AT rodriguezjavierm acquisitionoffunctionsontheoutercapsidsurfaceduringevolutionofdoublestrandedrnafungalviruses
AT gonzalezjosem acquisitionoffunctionsontheoutercapsidsurfaceduringevolutionofdoublestrandedrnafungalviruses
AT suzukinobuhiro acquisitionoffunctionsontheoutercapsidsurfaceduringevolutionofdoublestrandedrnafungalviruses
AT ghabrialsaida acquisitionoffunctionsontheoutercapsidsurfaceduringevolutionofdoublestrandedrnafungalviruses
AT carrascosajosel acquisitionoffunctionsontheoutercapsidsurfaceduringevolutionofdoublestrandedrnafungalviruses
AT trusbenesl acquisitionoffunctionsontheoutercapsidsurfaceduringevolutionofdoublestrandedrnafungalviruses
AT castonjoser acquisitionoffunctionsontheoutercapsidsurfaceduringevolutionofdoublestrandedrnafungalviruses