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NS2 is dispensable for efficient assembly of hepatitis C virus-like particles in a bipartite trans-encapsidation system

Infectious hepatitis C virus (HCV) particle production in the genotype 2a JFH-1-based cell culture system involves non-structural proteins in addition to canonical virion components. NS2 has been proposed to act as a protein adaptor, co-ordinating the early stages of virion assembly. However, other...

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Autores principales: Bentham, Matthew J., Marraiki, Najat, McCormick, Christopher J., Rowlands, David J., Griffin, Stephen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Society for General Microbiology 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4202265/
https://www.ncbi.nlm.nih.gov/pubmed/25024280
http://dx.doi.org/10.1099/vir.0.068932-0
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author Bentham, Matthew J.
Marraiki, Najat
McCormick, Christopher J.
Rowlands, David J.
Griffin, Stephen
author_facet Bentham, Matthew J.
Marraiki, Najat
McCormick, Christopher J.
Rowlands, David J.
Griffin, Stephen
author_sort Bentham, Matthew J.
collection PubMed
description Infectious hepatitis C virus (HCV) particle production in the genotype 2a JFH-1-based cell culture system involves non-structural proteins in addition to canonical virion components. NS2 has been proposed to act as a protein adaptor, co-ordinating the early stages of virion assembly. However, other studies have identified late-acting roles for this protein, making its precise involvement in infectious particle production unclear. Using a robust, bipartite trans-encapsidation system based upon baculovirus expression of HCV structural proteins, we have generated HCV-like particles (HCV-LP) in the absence of NS2 with overt similarity to wild-type virions. HCV-LP could transduce naive cells with trans-encapsidated subgenomic replicon RNAs and shared similar biochemical and biophysical properties with JFH-1 HCV. Both genotype 1b and JFH-1 intracellular HCV-LP were produced in the absence of NS2, whereas restoring NS2 to the JFH-1 system dramatically enhanced secreted infectivity, consistent with a late-acting role. Our system recapitulated authentic HCV particle assembly via trans-complementation of bicistronic, NS2-deleted, chimeric HCV, which is otherwise deficient in particle production. This closely resembled replicon-mediated NS2 trans-complementation, confirming that baculovirus expression of HCV proteins did not unduly affect particle production. Furthermore, this suggests that separation of structural protein expression from replicating HCV RNAs that are destined to be packaged alleviates an early stage requirement for NS2 during particle formation. This highlights our current lack of understanding of how NS2 mediates assembly, yet comparison of full-length and bipartite systems may provide further insight into this process.
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spelling pubmed-42022652014-11-04 NS2 is dispensable for efficient assembly of hepatitis C virus-like particles in a bipartite trans-encapsidation system Bentham, Matthew J. Marraiki, Najat McCormick, Christopher J. Rowlands, David J. Griffin, Stephen J Gen Virol Animal Infectious hepatitis C virus (HCV) particle production in the genotype 2a JFH-1-based cell culture system involves non-structural proteins in addition to canonical virion components. NS2 has been proposed to act as a protein adaptor, co-ordinating the early stages of virion assembly. However, other studies have identified late-acting roles for this protein, making its precise involvement in infectious particle production unclear. Using a robust, bipartite trans-encapsidation system based upon baculovirus expression of HCV structural proteins, we have generated HCV-like particles (HCV-LP) in the absence of NS2 with overt similarity to wild-type virions. HCV-LP could transduce naive cells with trans-encapsidated subgenomic replicon RNAs and shared similar biochemical and biophysical properties with JFH-1 HCV. Both genotype 1b and JFH-1 intracellular HCV-LP were produced in the absence of NS2, whereas restoring NS2 to the JFH-1 system dramatically enhanced secreted infectivity, consistent with a late-acting role. Our system recapitulated authentic HCV particle assembly via trans-complementation of bicistronic, NS2-deleted, chimeric HCV, which is otherwise deficient in particle production. This closely resembled replicon-mediated NS2 trans-complementation, confirming that baculovirus expression of HCV proteins did not unduly affect particle production. Furthermore, this suggests that separation of structural protein expression from replicating HCV RNAs that are destined to be packaged alleviates an early stage requirement for NS2 during particle formation. This highlights our current lack of understanding of how NS2 mediates assembly, yet comparison of full-length and bipartite systems may provide further insight into this process. Society for General Microbiology 2014-11 /pmc/articles/PMC4202265/ /pubmed/25024280 http://dx.doi.org/10.1099/vir.0.068932-0 Text en © 2014 The Authors http://creativecommons.org/licenses/by/2.5/ 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 work is properly cited.
spellingShingle Animal
Bentham, Matthew J.
Marraiki, Najat
McCormick, Christopher J.
Rowlands, David J.
Griffin, Stephen
NS2 is dispensable for efficient assembly of hepatitis C virus-like particles in a bipartite trans-encapsidation system
title NS2 is dispensable for efficient assembly of hepatitis C virus-like particles in a bipartite trans-encapsidation system
title_full NS2 is dispensable for efficient assembly of hepatitis C virus-like particles in a bipartite trans-encapsidation system
title_fullStr NS2 is dispensable for efficient assembly of hepatitis C virus-like particles in a bipartite trans-encapsidation system
title_full_unstemmed NS2 is dispensable for efficient assembly of hepatitis C virus-like particles in a bipartite trans-encapsidation system
title_short NS2 is dispensable for efficient assembly of hepatitis C virus-like particles in a bipartite trans-encapsidation system
title_sort ns2 is dispensable for efficient assembly of hepatitis c virus-like particles in a bipartite trans-encapsidation system
topic Animal
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4202265/
https://www.ncbi.nlm.nih.gov/pubmed/25024280
http://dx.doi.org/10.1099/vir.0.068932-0
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