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The structure of a 12-segmented dsRNA reovirus: New insights into capsid stabilization and organization

Infecting a wide range of hosts, members of Reovirales (formerly Reoviridae) consist of a genome with different numbers of segmented double stranded RNAs (dsRNA) encapsulated by a proteinaceous shell and carry out genome replication and transcription inside the virion. Several cryo-electron microsco...

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Autores principales: Zhang, Qinfen, Gao, Yuanzhu, Baker, Matthew L., Liu, Shanshan, Jia, Xudong, Xu, Haidong, He, Jianguo, Kaelber, Jason T., Weng, Shaoping, Jiang, Wen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10155992/
https://www.ncbi.nlm.nih.gov/pubmed/37083840
http://dx.doi.org/10.1371/journal.ppat.1011341
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author Zhang, Qinfen
Gao, Yuanzhu
Baker, Matthew L.
Liu, Shanshan
Jia, Xudong
Xu, Haidong
He, Jianguo
Kaelber, Jason T.
Weng, Shaoping
Jiang, Wen
author_facet Zhang, Qinfen
Gao, Yuanzhu
Baker, Matthew L.
Liu, Shanshan
Jia, Xudong
Xu, Haidong
He, Jianguo
Kaelber, Jason T.
Weng, Shaoping
Jiang, Wen
author_sort Zhang, Qinfen
collection PubMed
description Infecting a wide range of hosts, members of Reovirales (formerly Reoviridae) consist of a genome with different numbers of segmented double stranded RNAs (dsRNA) encapsulated by a proteinaceous shell and carry out genome replication and transcription inside the virion. Several cryo-electron microscopy (cryo-EM) structures of reoviruses with 9, 10 or 11 segmented dsRNA genomes have revealed insights into genome arrangement and transcription. However, the structure and genome arrangement of 12-segmented Reovirales members remain poorly understood. Using cryo-EM, we determined the structure of mud crab reovirus (MCRV), a 12-segmented dsRNA virus that is a putative member of Reovirales in the non-turreted Sedoreoviridae family, to near-atomic resolutions with icosahedral symmetry (3.1 Å) and without imposing icosahedral symmetry (3.4 Å). These structures revealed the organization of the major capsid proteins in two layers: an outer T = 13 layer consisting of VP12 trimers and unique VP11 clamps, and an inner T = 1 layer consisting of VP3 dimers. Additionally, ten RNA dependent RNA polymerases (RdRp) were well resolved just below the VP3 layer but were offset from the 5-fold axes and arranged with D(5) symmetry, which has not previously been seen in other members of Reovirales. The N-termini of VP3 were shown to adopt four unique conformations; two of which anchor the RdRps, while the other two conformations are likely involved in genome organization and capsid stability. Taken together, these structures provide a new level of understanding for capsid stabilization and genome organization of segmented dsRNA viruses.
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spelling pubmed-101559922023-05-04 The structure of a 12-segmented dsRNA reovirus: New insights into capsid stabilization and organization Zhang, Qinfen Gao, Yuanzhu Baker, Matthew L. Liu, Shanshan Jia, Xudong Xu, Haidong He, Jianguo Kaelber, Jason T. Weng, Shaoping Jiang, Wen PLoS Pathog Research Article Infecting a wide range of hosts, members of Reovirales (formerly Reoviridae) consist of a genome with different numbers of segmented double stranded RNAs (dsRNA) encapsulated by a proteinaceous shell and carry out genome replication and transcription inside the virion. Several cryo-electron microscopy (cryo-EM) structures of reoviruses with 9, 10 or 11 segmented dsRNA genomes have revealed insights into genome arrangement and transcription. However, the structure and genome arrangement of 12-segmented Reovirales members remain poorly understood. Using cryo-EM, we determined the structure of mud crab reovirus (MCRV), a 12-segmented dsRNA virus that is a putative member of Reovirales in the non-turreted Sedoreoviridae family, to near-atomic resolutions with icosahedral symmetry (3.1 Å) and without imposing icosahedral symmetry (3.4 Å). These structures revealed the organization of the major capsid proteins in two layers: an outer T = 13 layer consisting of VP12 trimers and unique VP11 clamps, and an inner T = 1 layer consisting of VP3 dimers. Additionally, ten RNA dependent RNA polymerases (RdRp) were well resolved just below the VP3 layer but were offset from the 5-fold axes and arranged with D(5) symmetry, which has not previously been seen in other members of Reovirales. The N-termini of VP3 were shown to adopt four unique conformations; two of which anchor the RdRps, while the other two conformations are likely involved in genome organization and capsid stability. Taken together, these structures provide a new level of understanding for capsid stabilization and genome organization of segmented dsRNA viruses. Public Library of Science 2023-04-21 /pmc/articles/PMC10155992/ /pubmed/37083840 http://dx.doi.org/10.1371/journal.ppat.1011341 Text en © 2023 Zhang et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Zhang, Qinfen
Gao, Yuanzhu
Baker, Matthew L.
Liu, Shanshan
Jia, Xudong
Xu, Haidong
He, Jianguo
Kaelber, Jason T.
Weng, Shaoping
Jiang, Wen
The structure of a 12-segmented dsRNA reovirus: New insights into capsid stabilization and organization
title The structure of a 12-segmented dsRNA reovirus: New insights into capsid stabilization and organization
title_full The structure of a 12-segmented dsRNA reovirus: New insights into capsid stabilization and organization
title_fullStr The structure of a 12-segmented dsRNA reovirus: New insights into capsid stabilization and organization
title_full_unstemmed The structure of a 12-segmented dsRNA reovirus: New insights into capsid stabilization and organization
title_short The structure of a 12-segmented dsRNA reovirus: New insights into capsid stabilization and organization
title_sort structure of a 12-segmented dsrna reovirus: new insights into capsid stabilization and organization
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10155992/
https://www.ncbi.nlm.nih.gov/pubmed/37083840
http://dx.doi.org/10.1371/journal.ppat.1011341
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