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Structure-Based Classification Defines the Discrete Conformational Classes Adopted by the Arenaviral GP1

The emergence of Old and New World arenaviruses from rodent reservoirs persistently threatens human health. The GP1 subunit of the envelope-displayed arenaviral glycoprotein spike complex (GPC) mediates host cell recognition and is an important determinant of cross-species transmission. Previous str...

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Autores principales: Pryce, Rhys, Ng, Weng M., Zeltina, Antra, Watanabe, Yasunori, El Omari, Kamel, Wagner, Armin, Bowden, Thomas A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6288339/
https://www.ncbi.nlm.nih.gov/pubmed/30305351
http://dx.doi.org/10.1128/JVI.01048-18
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author Pryce, Rhys
Ng, Weng M.
Zeltina, Antra
Watanabe, Yasunori
El Omari, Kamel
Wagner, Armin
Bowden, Thomas A.
author_facet Pryce, Rhys
Ng, Weng M.
Zeltina, Antra
Watanabe, Yasunori
El Omari, Kamel
Wagner, Armin
Bowden, Thomas A.
author_sort Pryce, Rhys
collection PubMed
description The emergence of Old and New World arenaviruses from rodent reservoirs persistently threatens human health. The GP1 subunit of the envelope-displayed arenaviral glycoprotein spike complex (GPC) mediates host cell recognition and is an important determinant of cross-species transmission. Previous structural analyses of Old World arenaviral GP1 glycoproteins, alone and in complex with a cognate GP2 subunit, have revealed that GP1 adopts two distinct conformational states distinguished by differences in the orientations of helical regions of the molecule. Here, through comparative study of the GP1 glycoprotein architectures of Old World Loei River virus and New World Whitewater Arroyo virus, we show that these rearrangements are restricted to Old World arenaviruses and are not induced solely by the pH change that is associated with virus endosomal trafficking. Our structure-based phylogenetic analysis of arenaviral GP1s provides a blueprint for understanding the discrete structural classes adopted by these therapeutically important targets. IMPORTANCE The genetically and geographically diverse group of viruses within the family Arenaviridae includes a number of zoonotic pathogens capable of causing fatal hemorrhagic fever. The multisubunit GPC glycoprotein spike complex displayed on the arenavirus envelope is a key determinant of species tropism and a primary target of the host humoral immune response. Here, we show that the receptor-binding GP1 subcomponent of the GPC spike from Old World but not New World arenaviruses adopts a distinct, pH-independent conformation in the absence of the cognate GP2. Our analysis provides a structure-based approach to understanding the discrete conformational classes sampled by these therapeutically important targets, informing strategies to develop arenaviral glycoprotein immunogens that resemble GPC as presented on the mature virion surface.
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spelling pubmed-62883392018-12-20 Structure-Based Classification Defines the Discrete Conformational Classes Adopted by the Arenaviral GP1 Pryce, Rhys Ng, Weng M. Zeltina, Antra Watanabe, Yasunori El Omari, Kamel Wagner, Armin Bowden, Thomas A. J Virol Structure and Assembly The emergence of Old and New World arenaviruses from rodent reservoirs persistently threatens human health. The GP1 subunit of the envelope-displayed arenaviral glycoprotein spike complex (GPC) mediates host cell recognition and is an important determinant of cross-species transmission. Previous structural analyses of Old World arenaviral GP1 glycoproteins, alone and in complex with a cognate GP2 subunit, have revealed that GP1 adopts two distinct conformational states distinguished by differences in the orientations of helical regions of the molecule. Here, through comparative study of the GP1 glycoprotein architectures of Old World Loei River virus and New World Whitewater Arroyo virus, we show that these rearrangements are restricted to Old World arenaviruses and are not induced solely by the pH change that is associated with virus endosomal trafficking. Our structure-based phylogenetic analysis of arenaviral GP1s provides a blueprint for understanding the discrete structural classes adopted by these therapeutically important targets. IMPORTANCE The genetically and geographically diverse group of viruses within the family Arenaviridae includes a number of zoonotic pathogens capable of causing fatal hemorrhagic fever. The multisubunit GPC glycoprotein spike complex displayed on the arenavirus envelope is a key determinant of species tropism and a primary target of the host humoral immune response. Here, we show that the receptor-binding GP1 subcomponent of the GPC spike from Old World but not New World arenaviruses adopts a distinct, pH-independent conformation in the absence of the cognate GP2. Our analysis provides a structure-based approach to understanding the discrete conformational classes sampled by these therapeutically important targets, informing strategies to develop arenaviral glycoprotein immunogens that resemble GPC as presented on the mature virion surface. American Society for Microbiology 2018-12-10 /pmc/articles/PMC6288339/ /pubmed/30305351 http://dx.doi.org/10.1128/JVI.01048-18 Text en Copyright © 2018 Pryce et al. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Structure and Assembly
Pryce, Rhys
Ng, Weng M.
Zeltina, Antra
Watanabe, Yasunori
El Omari, Kamel
Wagner, Armin
Bowden, Thomas A.
Structure-Based Classification Defines the Discrete Conformational Classes Adopted by the Arenaviral GP1
title Structure-Based Classification Defines the Discrete Conformational Classes Adopted by the Arenaviral GP1
title_full Structure-Based Classification Defines the Discrete Conformational Classes Adopted by the Arenaviral GP1
title_fullStr Structure-Based Classification Defines the Discrete Conformational Classes Adopted by the Arenaviral GP1
title_full_unstemmed Structure-Based Classification Defines the Discrete Conformational Classes Adopted by the Arenaviral GP1
title_short Structure-Based Classification Defines the Discrete Conformational Classes Adopted by the Arenaviral GP1
title_sort structure-based classification defines the discrete conformational classes adopted by the arenaviral gp1
topic Structure and Assembly
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6288339/
https://www.ncbi.nlm.nih.gov/pubmed/30305351
http://dx.doi.org/10.1128/JVI.01048-18
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