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Structure Determination of Feline Calicivirus Virus-Like Particles in the Context of a Pseudo-Octahedral Arrangement

The vesivirus feline calicivirus (FCV) is a positive strand RNA virus encapsidated by an icosahedral T=3 shell formed by the viral VP1 protein. Upon its expression in the insect cell - baculovirus system in the context of vaccine development, two types of virus-like particles (VLPs) were formed, a m...

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Autores principales: Burmeister, Wim P., Buisson, Marlyse, Estrozi, Leandro F., Schoehn, Guy, Billet, Olivier, Hannas, Zahia, Sigoillot, Cécile, Poulet, Hervé
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4368116/
https://www.ncbi.nlm.nih.gov/pubmed/25794153
http://dx.doi.org/10.1371/journal.pone.0119289
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author Burmeister, Wim P.
Buisson, Marlyse
Estrozi, Leandro F.
Schoehn, Guy
Billet, Olivier
Hannas, Zahia
Sigoillot, Cécile
Poulet, Hervé
author_facet Burmeister, Wim P.
Buisson, Marlyse
Estrozi, Leandro F.
Schoehn, Guy
Billet, Olivier
Hannas, Zahia
Sigoillot, Cécile
Poulet, Hervé
author_sort Burmeister, Wim P.
collection PubMed
description The vesivirus feline calicivirus (FCV) is a positive strand RNA virus encapsidated by an icosahedral T=3 shell formed by the viral VP1 protein. Upon its expression in the insect cell - baculovirus system in the context of vaccine development, two types of virus-like particles (VLPs) were formed, a majority built of 60 subunits (T=1) and a minority probably built of 180 subunits (T=3). The structure of the small particles was determined by x-ray crystallography at 0.8 nm resolution helped by cryo-electron microscopy in order to understand their formation. Cubic crystals belonged to space group P2(1)3. Their self-rotation function showed the presence of an octahedral pseudo-symmetry similar to the one described previously by Agerbandje and co-workers for human parvovirus VLPs. The crystal structure could be solved starting from the published VP1 structure in the context of the T=3 viral capsid. In contrast to viral capsids, where the capsomers are interlocked by the exchange of the N-terminal arm (NTA) domain, this domain is disordered in the T=1 capsid of the VLPs. Furthermore it is prone to proteolytic cleavage. The relative orientation of P (protrusion) and S (shell) domains is alerted so as to fit VP1 to the smaller T=1 particle whereas the intermolecular contacts around 2-fold, 3-fold and 5-fold axes are conserved. By consequence the surface of the VLP is very similar compared to the viral capsid and suggests a similar antigenicity. The knowledge of the structure of the VLPs will help to improve their stability, in respect to a use for vaccination.
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spelling pubmed-43681162015-03-27 Structure Determination of Feline Calicivirus Virus-Like Particles in the Context of a Pseudo-Octahedral Arrangement Burmeister, Wim P. Buisson, Marlyse Estrozi, Leandro F. Schoehn, Guy Billet, Olivier Hannas, Zahia Sigoillot, Cécile Poulet, Hervé PLoS One Research Article The vesivirus feline calicivirus (FCV) is a positive strand RNA virus encapsidated by an icosahedral T=3 shell formed by the viral VP1 protein. Upon its expression in the insect cell - baculovirus system in the context of vaccine development, two types of virus-like particles (VLPs) were formed, a majority built of 60 subunits (T=1) and a minority probably built of 180 subunits (T=3). The structure of the small particles was determined by x-ray crystallography at 0.8 nm resolution helped by cryo-electron microscopy in order to understand their formation. Cubic crystals belonged to space group P2(1)3. Their self-rotation function showed the presence of an octahedral pseudo-symmetry similar to the one described previously by Agerbandje and co-workers for human parvovirus VLPs. The crystal structure could be solved starting from the published VP1 structure in the context of the T=3 viral capsid. In contrast to viral capsids, where the capsomers are interlocked by the exchange of the N-terminal arm (NTA) domain, this domain is disordered in the T=1 capsid of the VLPs. Furthermore it is prone to proteolytic cleavage. The relative orientation of P (protrusion) and S (shell) domains is alerted so as to fit VP1 to the smaller T=1 particle whereas the intermolecular contacts around 2-fold, 3-fold and 5-fold axes are conserved. By consequence the surface of the VLP is very similar compared to the viral capsid and suggests a similar antigenicity. The knowledge of the structure of the VLPs will help to improve their stability, in respect to a use for vaccination. Public Library of Science 2015-03-20 /pmc/articles/PMC4368116/ /pubmed/25794153 http://dx.doi.org/10.1371/journal.pone.0119289 Text en © 2015 Burmeister 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Burmeister, Wim P.
Buisson, Marlyse
Estrozi, Leandro F.
Schoehn, Guy
Billet, Olivier
Hannas, Zahia
Sigoillot, Cécile
Poulet, Hervé
Structure Determination of Feline Calicivirus Virus-Like Particles in the Context of a Pseudo-Octahedral Arrangement
title Structure Determination of Feline Calicivirus Virus-Like Particles in the Context of a Pseudo-Octahedral Arrangement
title_full Structure Determination of Feline Calicivirus Virus-Like Particles in the Context of a Pseudo-Octahedral Arrangement
title_fullStr Structure Determination of Feline Calicivirus Virus-Like Particles in the Context of a Pseudo-Octahedral Arrangement
title_full_unstemmed Structure Determination of Feline Calicivirus Virus-Like Particles in the Context of a Pseudo-Octahedral Arrangement
title_short Structure Determination of Feline Calicivirus Virus-Like Particles in the Context of a Pseudo-Octahedral Arrangement
title_sort structure determination of feline calicivirus virus-like particles in the context of a pseudo-octahedral arrangement
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4368116/
https://www.ncbi.nlm.nih.gov/pubmed/25794153
http://dx.doi.org/10.1371/journal.pone.0119289
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