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Tandem Fusion of Hepatitis B Core Antigen Allows Assembly of Virus-Like Particles in Bacteria and Plants with Enhanced Capacity to Accommodate Foreign Proteins

The core protein of the hepatitis B virus, HBcAg, assembles into highly immunogenic virus-like particles (HBc VLPs) when expressed in a variety of heterologous systems. Specifically, the major insertion region (MIR) on the HBcAg protein allows the insertion of foreign sequences, which are then expos...

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Autores principales: Peyret, Hadrien, Gehin, Annick, Thuenemann, Eva C., Blond, Donatienne, El Turabi, Aadil, Beales, Lucy, Clarke, Dean, Gilbert, Robert J. C., Fry, Elizabeth E., Stuart, David I., Holmes, Kris, Stonehouse, Nicola J., Whelan, Mike, Rosenberg, William, Lomonossoff, George P., Rowlands, David J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4382129/
https://www.ncbi.nlm.nih.gov/pubmed/25830365
http://dx.doi.org/10.1371/journal.pone.0120751
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author Peyret, Hadrien
Gehin, Annick
Thuenemann, Eva C.
Blond, Donatienne
El Turabi, Aadil
Beales, Lucy
Clarke, Dean
Gilbert, Robert J. C.
Fry, Elizabeth E.
Stuart, David I.
Holmes, Kris
Stonehouse, Nicola J.
Whelan, Mike
Rosenberg, William
Lomonossoff, George P.
Rowlands, David J.
author_facet Peyret, Hadrien
Gehin, Annick
Thuenemann, Eva C.
Blond, Donatienne
El Turabi, Aadil
Beales, Lucy
Clarke, Dean
Gilbert, Robert J. C.
Fry, Elizabeth E.
Stuart, David I.
Holmes, Kris
Stonehouse, Nicola J.
Whelan, Mike
Rosenberg, William
Lomonossoff, George P.
Rowlands, David J.
author_sort Peyret, Hadrien
collection PubMed
description The core protein of the hepatitis B virus, HBcAg, assembles into highly immunogenic virus-like particles (HBc VLPs) when expressed in a variety of heterologous systems. Specifically, the major insertion region (MIR) on the HBcAg protein allows the insertion of foreign sequences, which are then exposed on the tips of surface spike structures on the outside of the assembled particle. Here, we present a novel strategy which aids the display of whole proteins on the surface of HBc particles. This strategy, named tandem core, is based on the production of the HBcAg dimer as a single polypeptide chain by tandem fusion of two HBcAg open reading frames. This allows the insertion of large heterologous sequences in only one of the two MIRs in each spike, without compromising VLP formation. We present the use of tandem core technology in both plant and bacterial expression systems. The results show that tandem core particles can be produced with unmodified MIRs, or with one MIR in each tandem dimer modified to contain the entire sequence of GFP or of a camelid nanobody. Both inserted proteins are correctly folded and the nanobody fused to the surface of the tandem core particle (which we name tandibody) retains the ability to bind to its cognate antigen. This technology paves the way for the display of natively folded proteins on the surface of HBc particles either through direct fusion or through non-covalent attachment via a nanobody.
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spelling pubmed-43821292015-04-09 Tandem Fusion of Hepatitis B Core Antigen Allows Assembly of Virus-Like Particles in Bacteria and Plants with Enhanced Capacity to Accommodate Foreign Proteins Peyret, Hadrien Gehin, Annick Thuenemann, Eva C. Blond, Donatienne El Turabi, Aadil Beales, Lucy Clarke, Dean Gilbert, Robert J. C. Fry, Elizabeth E. Stuart, David I. Holmes, Kris Stonehouse, Nicola J. Whelan, Mike Rosenberg, William Lomonossoff, George P. Rowlands, David J. PLoS One Research Article The core protein of the hepatitis B virus, HBcAg, assembles into highly immunogenic virus-like particles (HBc VLPs) when expressed in a variety of heterologous systems. Specifically, the major insertion region (MIR) on the HBcAg protein allows the insertion of foreign sequences, which are then exposed on the tips of surface spike structures on the outside of the assembled particle. Here, we present a novel strategy which aids the display of whole proteins on the surface of HBc particles. This strategy, named tandem core, is based on the production of the HBcAg dimer as a single polypeptide chain by tandem fusion of two HBcAg open reading frames. This allows the insertion of large heterologous sequences in only one of the two MIRs in each spike, without compromising VLP formation. We present the use of tandem core technology in both plant and bacterial expression systems. The results show that tandem core particles can be produced with unmodified MIRs, or with one MIR in each tandem dimer modified to contain the entire sequence of GFP or of a camelid nanobody. Both inserted proteins are correctly folded and the nanobody fused to the surface of the tandem core particle (which we name tandibody) retains the ability to bind to its cognate antigen. This technology paves the way for the display of natively folded proteins on the surface of HBc particles either through direct fusion or through non-covalent attachment via a nanobody. Public Library of Science 2015-04-01 /pmc/articles/PMC4382129/ /pubmed/25830365 http://dx.doi.org/10.1371/journal.pone.0120751 Text en © 2015 Peyret 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
Peyret, Hadrien
Gehin, Annick
Thuenemann, Eva C.
Blond, Donatienne
El Turabi, Aadil
Beales, Lucy
Clarke, Dean
Gilbert, Robert J. C.
Fry, Elizabeth E.
Stuart, David I.
Holmes, Kris
Stonehouse, Nicola J.
Whelan, Mike
Rosenberg, William
Lomonossoff, George P.
Rowlands, David J.
Tandem Fusion of Hepatitis B Core Antigen Allows Assembly of Virus-Like Particles in Bacteria and Plants with Enhanced Capacity to Accommodate Foreign Proteins
title Tandem Fusion of Hepatitis B Core Antigen Allows Assembly of Virus-Like Particles in Bacteria and Plants with Enhanced Capacity to Accommodate Foreign Proteins
title_full Tandem Fusion of Hepatitis B Core Antigen Allows Assembly of Virus-Like Particles in Bacteria and Plants with Enhanced Capacity to Accommodate Foreign Proteins
title_fullStr Tandem Fusion of Hepatitis B Core Antigen Allows Assembly of Virus-Like Particles in Bacteria and Plants with Enhanced Capacity to Accommodate Foreign Proteins
title_full_unstemmed Tandem Fusion of Hepatitis B Core Antigen Allows Assembly of Virus-Like Particles in Bacteria and Plants with Enhanced Capacity to Accommodate Foreign Proteins
title_short Tandem Fusion of Hepatitis B Core Antigen Allows Assembly of Virus-Like Particles in Bacteria and Plants with Enhanced Capacity to Accommodate Foreign Proteins
title_sort tandem fusion of hepatitis b core antigen allows assembly of virus-like particles in bacteria and plants with enhanced capacity to accommodate foreign proteins
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4382129/
https://www.ncbi.nlm.nih.gov/pubmed/25830365
http://dx.doi.org/10.1371/journal.pone.0120751
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