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Membrane alterations induced by nonstructural proteins of human norovirus

Human noroviruses (huNoV) are the most frequent cause of non-bacterial acute gastroenteritis worldwide, particularly genogroup II genotype 4 (GII.4) variants. The viral nonstructural (NS) proteins encoded by the ORF1 polyprotein induce vesical clusters harboring the viral replication sites. Little i...

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Autores principales: Doerflinger, Sylvie Y., Cortese, Mirko, Romero-Brey, Inés, Menne, Zach, Tubiana, Thibault, Schenk, Christian, White, Peter A., Bartenschlager, Ralf, Bressanelli, Stéphane, Hansman, Grant S., Lohmann, Volker
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5678787/
https://www.ncbi.nlm.nih.gov/pubmed/29077760
http://dx.doi.org/10.1371/journal.ppat.1006705
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author Doerflinger, Sylvie Y.
Cortese, Mirko
Romero-Brey, Inés
Menne, Zach
Tubiana, Thibault
Schenk, Christian
White, Peter A.
Bartenschlager, Ralf
Bressanelli, Stéphane
Hansman, Grant S.
Lohmann, Volker
author_facet Doerflinger, Sylvie Y.
Cortese, Mirko
Romero-Brey, Inés
Menne, Zach
Tubiana, Thibault
Schenk, Christian
White, Peter A.
Bartenschlager, Ralf
Bressanelli, Stéphane
Hansman, Grant S.
Lohmann, Volker
author_sort Doerflinger, Sylvie Y.
collection PubMed
description Human noroviruses (huNoV) are the most frequent cause of non-bacterial acute gastroenteritis worldwide, particularly genogroup II genotype 4 (GII.4) variants. The viral nonstructural (NS) proteins encoded by the ORF1 polyprotein induce vesical clusters harboring the viral replication sites. Little is known so far about the ultrastructure of these replication organelles or the contribution of individual NS proteins to their biogenesis. We compared the ultrastructural changes induced by expression of norovirus ORF1 polyproteins with those induced upon infection with murine norovirus (MNV). Characteristic membrane alterations induced by ORF1 expression resembled those found in MNV infected cells, consisting of vesicle accumulations likely built from the endoplasmic reticulum (ER) which included single membrane vesicles (SMVs), double membrane vesicles (DMVs) and multi membrane vesicles (MMVs). In-depth analysis using electron tomography suggested that MMVs originate through the enwrapping of SMVs with tubular structures similar to mechanisms reported for picornaviruses. Expression of GII.4 NS1-2, NS3 and NS4 fused to GFP revealed distinct membrane alterations when analyzed by correlative light and electron microscopy. Expression of NS1-2 induced proliferation of smooth ER membranes forming long tubular structures that were affected by mutations in the active center of the putative NS1-2 hydrolase domain. NS3 was associated with ER membranes around lipid droplets (LDs) and induced the formation of convoluted membranes, which were even more pronounced in case of NS4. Interestingly, NS4 was the only GII.4 protein capable of inducing SMV and DMV formation when expressed individually. Our work provides the first ultrastructural analysis of norovirus GII.4 induced vesicle clusters and suggests that their morphology and biogenesis is most similar to picornaviruses. We further identified NS4 as a key factor in the formation of membrane alterations of huNoV and provide models of the putative membrane topologies of NS1-2, NS3 and NS4 to guide future studies.
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spelling pubmed-56787872017-11-18 Membrane alterations induced by nonstructural proteins of human norovirus Doerflinger, Sylvie Y. Cortese, Mirko Romero-Brey, Inés Menne, Zach Tubiana, Thibault Schenk, Christian White, Peter A. Bartenschlager, Ralf Bressanelli, Stéphane Hansman, Grant S. Lohmann, Volker PLoS Pathog Research Article Human noroviruses (huNoV) are the most frequent cause of non-bacterial acute gastroenteritis worldwide, particularly genogroup II genotype 4 (GII.4) variants. The viral nonstructural (NS) proteins encoded by the ORF1 polyprotein induce vesical clusters harboring the viral replication sites. Little is known so far about the ultrastructure of these replication organelles or the contribution of individual NS proteins to their biogenesis. We compared the ultrastructural changes induced by expression of norovirus ORF1 polyproteins with those induced upon infection with murine norovirus (MNV). Characteristic membrane alterations induced by ORF1 expression resembled those found in MNV infected cells, consisting of vesicle accumulations likely built from the endoplasmic reticulum (ER) which included single membrane vesicles (SMVs), double membrane vesicles (DMVs) and multi membrane vesicles (MMVs). In-depth analysis using electron tomography suggested that MMVs originate through the enwrapping of SMVs with tubular structures similar to mechanisms reported for picornaviruses. Expression of GII.4 NS1-2, NS3 and NS4 fused to GFP revealed distinct membrane alterations when analyzed by correlative light and electron microscopy. Expression of NS1-2 induced proliferation of smooth ER membranes forming long tubular structures that were affected by mutations in the active center of the putative NS1-2 hydrolase domain. NS3 was associated with ER membranes around lipid droplets (LDs) and induced the formation of convoluted membranes, which were even more pronounced in case of NS4. Interestingly, NS4 was the only GII.4 protein capable of inducing SMV and DMV formation when expressed individually. Our work provides the first ultrastructural analysis of norovirus GII.4 induced vesicle clusters and suggests that their morphology and biogenesis is most similar to picornaviruses. We further identified NS4 as a key factor in the formation of membrane alterations of huNoV and provide models of the putative membrane topologies of NS1-2, NS3 and NS4 to guide future studies. Public Library of Science 2017-10-27 /pmc/articles/PMC5678787/ /pubmed/29077760 http://dx.doi.org/10.1371/journal.ppat.1006705 Text en © 2017 Doerflinger 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
Doerflinger, Sylvie Y.
Cortese, Mirko
Romero-Brey, Inés
Menne, Zach
Tubiana, Thibault
Schenk, Christian
White, Peter A.
Bartenschlager, Ralf
Bressanelli, Stéphane
Hansman, Grant S.
Lohmann, Volker
Membrane alterations induced by nonstructural proteins of human norovirus
title Membrane alterations induced by nonstructural proteins of human norovirus
title_full Membrane alterations induced by nonstructural proteins of human norovirus
title_fullStr Membrane alterations induced by nonstructural proteins of human norovirus
title_full_unstemmed Membrane alterations induced by nonstructural proteins of human norovirus
title_short Membrane alterations induced by nonstructural proteins of human norovirus
title_sort membrane alterations induced by nonstructural proteins of human norovirus
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5678787/
https://www.ncbi.nlm.nih.gov/pubmed/29077760
http://dx.doi.org/10.1371/journal.ppat.1006705
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