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Display of whole proteins on inner and outer surfaces of grapevine fanleaf virus‐like particles

Virus‐like particles (VLPs) derived from nonenveloped viruses result from the self‐assembly of capsid proteins (CPs). They generally show similar structural features to viral particles but are noninfectious and their inner cavity and outer surface can potentially be adapted to serve as nanocarriers...

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Detalles Bibliográficos
Autores principales: Belval, Lorène, Hemmer, Caroline, Sauter, Claude, Reinbold, Catherine, Fauny, Jean‐Daniel, Berthold, François, Ackerer, Léa, Schmitt‐Keichinger, Corinne, Lemaire, Olivier, Demangeat, Gérard, Ritzenthaler, Christophe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5103221/
https://www.ncbi.nlm.nih.gov/pubmed/27178344
http://dx.doi.org/10.1111/pbi.12582
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author Belval, Lorène
Hemmer, Caroline
Sauter, Claude
Reinbold, Catherine
Fauny, Jean‐Daniel
Berthold, François
Ackerer, Léa
Schmitt‐Keichinger, Corinne
Lemaire, Olivier
Demangeat, Gérard
Ritzenthaler, Christophe
author_facet Belval, Lorène
Hemmer, Caroline
Sauter, Claude
Reinbold, Catherine
Fauny, Jean‐Daniel
Berthold, François
Ackerer, Léa
Schmitt‐Keichinger, Corinne
Lemaire, Olivier
Demangeat, Gérard
Ritzenthaler, Christophe
author_sort Belval, Lorène
collection PubMed
description Virus‐like particles (VLPs) derived from nonenveloped viruses result from the self‐assembly of capsid proteins (CPs). They generally show similar structural features to viral particles but are noninfectious and their inner cavity and outer surface can potentially be adapted to serve as nanocarriers of great biotechnological interest. While a VLP outer surface is generally amenable to chemical or genetic modifications, encaging a cargo within particles can be more complex and is often limited to small molecules or peptides. Examples where both inner cavity and outer surface have been used to simultaneously encapsulate and expose entire proteins remain scarce. Here, we describe the production of spherical VLPs exposing fluorescent proteins at either their outer surface or inner cavity as a result of the self‐assembly of a single genetically modified viral structural protein, the CP of grapevine fanleaf virus (GFLV). We found that the N‐ and C‐terminal ends of the GFLV CP allow the genetic fusion of proteins as large as 27 kDa and the plant‐based production of nucleic acid‐free VLPs. Remarkably, expression of N‐ or C‐terminal CP fusions resulted in the production of VLPs with recombinant proteins exposed to either the inner cavity or the outer surface, respectively, while coexpression of both fusion proteins led to the formation hybrid VLP, although rather inefficiently. Such properties are rather unique for a single viral structural protein and open new potential avenues for the design of safe and versatile nanocarriers, particularly for the targeted delivery of bioactive molecules.
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spelling pubmed-51032212016-11-16 Display of whole proteins on inner and outer surfaces of grapevine fanleaf virus‐like particles Belval, Lorène Hemmer, Caroline Sauter, Claude Reinbold, Catherine Fauny, Jean‐Daniel Berthold, François Ackerer, Léa Schmitt‐Keichinger, Corinne Lemaire, Olivier Demangeat, Gérard Ritzenthaler, Christophe Plant Biotechnol J Research Articles Virus‐like particles (VLPs) derived from nonenveloped viruses result from the self‐assembly of capsid proteins (CPs). They generally show similar structural features to viral particles but are noninfectious and their inner cavity and outer surface can potentially be adapted to serve as nanocarriers of great biotechnological interest. While a VLP outer surface is generally amenable to chemical or genetic modifications, encaging a cargo within particles can be more complex and is often limited to small molecules or peptides. Examples where both inner cavity and outer surface have been used to simultaneously encapsulate and expose entire proteins remain scarce. Here, we describe the production of spherical VLPs exposing fluorescent proteins at either their outer surface or inner cavity as a result of the self‐assembly of a single genetically modified viral structural protein, the CP of grapevine fanleaf virus (GFLV). We found that the N‐ and C‐terminal ends of the GFLV CP allow the genetic fusion of proteins as large as 27 kDa and the plant‐based production of nucleic acid‐free VLPs. Remarkably, expression of N‐ or C‐terminal CP fusions resulted in the production of VLPs with recombinant proteins exposed to either the inner cavity or the outer surface, respectively, while coexpression of both fusion proteins led to the formation hybrid VLP, although rather inefficiently. Such properties are rather unique for a single viral structural protein and open new potential avenues for the design of safe and versatile nanocarriers, particularly for the targeted delivery of bioactive molecules. John Wiley and Sons Inc. 2016-07-29 2016-12 /pmc/articles/PMC5103221/ /pubmed/27178344 http://dx.doi.org/10.1111/pbi.12582 Text en © 2016 The Authors. Plant Biotechnology Journal published by Society for Experimental Biology and The Association of Applied Biologists and John Wiley Sons Ltd. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Belval, Lorène
Hemmer, Caroline
Sauter, Claude
Reinbold, Catherine
Fauny, Jean‐Daniel
Berthold, François
Ackerer, Léa
Schmitt‐Keichinger, Corinne
Lemaire, Olivier
Demangeat, Gérard
Ritzenthaler, Christophe
Display of whole proteins on inner and outer surfaces of grapevine fanleaf virus‐like particles
title Display of whole proteins on inner and outer surfaces of grapevine fanleaf virus‐like particles
title_full Display of whole proteins on inner and outer surfaces of grapevine fanleaf virus‐like particles
title_fullStr Display of whole proteins on inner and outer surfaces of grapevine fanleaf virus‐like particles
title_full_unstemmed Display of whole proteins on inner and outer surfaces of grapevine fanleaf virus‐like particles
title_short Display of whole proteins on inner and outer surfaces of grapevine fanleaf virus‐like particles
title_sort display of whole proteins on inner and outer surfaces of grapevine fanleaf virus‐like particles
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5103221/
https://www.ncbi.nlm.nih.gov/pubmed/27178344
http://dx.doi.org/10.1111/pbi.12582
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