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Structure of the Macrobrachium rosenbergii nodavirus: A new genus within the Nodaviridae?

Macrobrachium rosenbergii nodavirus (MrNV) is a pathogen of freshwater prawns that poses a threat to food security and causes significant economic losses in the aquaculture industries of many developing nations. A detailed understanding of the MrNV virion structure will inform the development of str...

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Autores principales: Ho, Kok Lian, Gabrielsen, Mads, Beh, Poay Ling, Kueh, Chare Li, Thong, Qiu Xian, Streetley, James, Tan, Wen Siang, Bhella, David
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6211762/
https://www.ncbi.nlm.nih.gov/pubmed/30346944
http://dx.doi.org/10.1371/journal.pbio.3000038
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author Ho, Kok Lian
Gabrielsen, Mads
Beh, Poay Ling
Kueh, Chare Li
Thong, Qiu Xian
Streetley, James
Tan, Wen Siang
Bhella, David
author_facet Ho, Kok Lian
Gabrielsen, Mads
Beh, Poay Ling
Kueh, Chare Li
Thong, Qiu Xian
Streetley, James
Tan, Wen Siang
Bhella, David
author_sort Ho, Kok Lian
collection PubMed
description Macrobrachium rosenbergii nodavirus (MrNV) is a pathogen of freshwater prawns that poses a threat to food security and causes significant economic losses in the aquaculture industries of many developing nations. A detailed understanding of the MrNV virion structure will inform the development of strategies to control outbreaks. The MrNV capsid has also been engineered to display heterologous antigens, and thus knowledge of its atomic resolution structure will benefit efforts to develop tools based on this platform. Here, we present an atomic-resolution model of the MrNV capsid protein (CP), calculated by cryogenic electron microscopy (cryoEM) of MrNV virus-like particles (VLPs) produced in insect cells, and three-dimensional (3D) image reconstruction at 3.3 Å resolution. CryoEM of MrNV virions purified from infected freshwater prawn post-larvae yielded a 6.6 Å resolution structure, confirming the biological relevance of the VLP structure. Our data revealed that unlike other known nodavirus structures, which have been shown to assemble capsids having trimeric spikes, MrNV assembles a T = 3 capsid with dimeric spikes. We also found a number of surprising similarities between the MrNV capsid structure and that of the Tombusviridae: 1) an extensive network of N-terminal arms (NTAs) lines the capsid interior, forming long-range interactions to lace together asymmetric units; 2) the capsid shell is stabilised by 3 pairs of Ca(2+) ions in each asymmetric unit; 3) the protruding spike domain exhibits a very similar fold to that seen in the spikes of the tombusviruses. These structural similarities raise questions concerning the taxonomic classification of MrNV.
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spelling pubmed-62117622018-11-19 Structure of the Macrobrachium rosenbergii nodavirus: A new genus within the Nodaviridae? Ho, Kok Lian Gabrielsen, Mads Beh, Poay Ling Kueh, Chare Li Thong, Qiu Xian Streetley, James Tan, Wen Siang Bhella, David PLoS Biol Research Article Macrobrachium rosenbergii nodavirus (MrNV) is a pathogen of freshwater prawns that poses a threat to food security and causes significant economic losses in the aquaculture industries of many developing nations. A detailed understanding of the MrNV virion structure will inform the development of strategies to control outbreaks. The MrNV capsid has also been engineered to display heterologous antigens, and thus knowledge of its atomic resolution structure will benefit efforts to develop tools based on this platform. Here, we present an atomic-resolution model of the MrNV capsid protein (CP), calculated by cryogenic electron microscopy (cryoEM) of MrNV virus-like particles (VLPs) produced in insect cells, and three-dimensional (3D) image reconstruction at 3.3 Å resolution. CryoEM of MrNV virions purified from infected freshwater prawn post-larvae yielded a 6.6 Å resolution structure, confirming the biological relevance of the VLP structure. Our data revealed that unlike other known nodavirus structures, which have been shown to assemble capsids having trimeric spikes, MrNV assembles a T = 3 capsid with dimeric spikes. We also found a number of surprising similarities between the MrNV capsid structure and that of the Tombusviridae: 1) an extensive network of N-terminal arms (NTAs) lines the capsid interior, forming long-range interactions to lace together asymmetric units; 2) the capsid shell is stabilised by 3 pairs of Ca(2+) ions in each asymmetric unit; 3) the protruding spike domain exhibits a very similar fold to that seen in the spikes of the tombusviruses. These structural similarities raise questions concerning the taxonomic classification of MrNV. Public Library of Science 2018-10-22 /pmc/articles/PMC6211762/ /pubmed/30346944 http://dx.doi.org/10.1371/journal.pbio.3000038 Text en © 2018 Ho et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://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
Ho, Kok Lian
Gabrielsen, Mads
Beh, Poay Ling
Kueh, Chare Li
Thong, Qiu Xian
Streetley, James
Tan, Wen Siang
Bhella, David
Structure of the Macrobrachium rosenbergii nodavirus: A new genus within the Nodaviridae?
title Structure of the Macrobrachium rosenbergii nodavirus: A new genus within the Nodaviridae?
title_full Structure of the Macrobrachium rosenbergii nodavirus: A new genus within the Nodaviridae?
title_fullStr Structure of the Macrobrachium rosenbergii nodavirus: A new genus within the Nodaviridae?
title_full_unstemmed Structure of the Macrobrachium rosenbergii nodavirus: A new genus within the Nodaviridae?
title_short Structure of the Macrobrachium rosenbergii nodavirus: A new genus within the Nodaviridae?
title_sort structure of the macrobrachium rosenbergii nodavirus: a new genus within the nodaviridae?
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6211762/
https://www.ncbi.nlm.nih.gov/pubmed/30346944
http://dx.doi.org/10.1371/journal.pbio.3000038
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