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A Selectable and Excisable Marker System for the Rapid Creation of Recombinant Poxviruses

BACKGROUND: Genetic manipulation of poxvirus genomes through attenuation, or insertion of therapeutic genes has led to a number of vector candidates for the treatment of a variety of human diseases. The development of recombinant poxviruses often involves the genomic insertion of a selectable marker...

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Autores principales: Rintoul, Julia L., Wang, Jiahu, Gammon, Don B., van Buuren, Nicholas J., Garson, Kenneth, Jardine, Karen, Barry, Michele, Evans, David H., Bell, John C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3169633/
https://www.ncbi.nlm.nih.gov/pubmed/21931792
http://dx.doi.org/10.1371/journal.pone.0024643
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author Rintoul, Julia L.
Wang, Jiahu
Gammon, Don B.
van Buuren, Nicholas J.
Garson, Kenneth
Jardine, Karen
Barry, Michele
Evans, David H.
Bell, John C.
author_facet Rintoul, Julia L.
Wang, Jiahu
Gammon, Don B.
van Buuren, Nicholas J.
Garson, Kenneth
Jardine, Karen
Barry, Michele
Evans, David H.
Bell, John C.
author_sort Rintoul, Julia L.
collection PubMed
description BACKGROUND: Genetic manipulation of poxvirus genomes through attenuation, or insertion of therapeutic genes has led to a number of vector candidates for the treatment of a variety of human diseases. The development of recombinant poxviruses often involves the genomic insertion of a selectable marker for purification and selection purposes. The use of marker genes however inevitably results in a vector that contains unwanted genetic information of no therapeutic value. METHODOLOGY/PRINCIPAL FINDINGS: Here we describe an improved strategy that allows for the creation of marker-free recombinant poxviruses of any species. The Selectable and Excisable Marker (SEM) system incorporates a unique fusion marker gene for the efficient selection of poxvirus recombinants and the Cre/loxP system to facilitate the subsequent removal of the marker. We have defined and characterized this new methodological tool by insertion of a foreign gene into vaccinia virus, with the subsequent removal of the selectable marker. We then analyzed the importance of loxP orientation during Cre recombination, and show that the SEM system can be used to introduce site-specific deletions or inversions into the viral genome. Finally, we demonstrate that the SEM strategy is amenable to other poxviruses, as demonstrated here with the creation of an ectromelia virus recombinant lacking the EVM002 gene. CONCLUSION/SIGNIFICANCE: The system described here thus provides a faster, simpler and more efficient means to create clinic-ready recombinant poxviruses for therapeutic gene therapy applications.
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spelling pubmed-31696332011-09-19 A Selectable and Excisable Marker System for the Rapid Creation of Recombinant Poxviruses Rintoul, Julia L. Wang, Jiahu Gammon, Don B. van Buuren, Nicholas J. Garson, Kenneth Jardine, Karen Barry, Michele Evans, David H. Bell, John C. PLoS One Research Article BACKGROUND: Genetic manipulation of poxvirus genomes through attenuation, or insertion of therapeutic genes has led to a number of vector candidates for the treatment of a variety of human diseases. The development of recombinant poxviruses often involves the genomic insertion of a selectable marker for purification and selection purposes. The use of marker genes however inevitably results in a vector that contains unwanted genetic information of no therapeutic value. METHODOLOGY/PRINCIPAL FINDINGS: Here we describe an improved strategy that allows for the creation of marker-free recombinant poxviruses of any species. The Selectable and Excisable Marker (SEM) system incorporates a unique fusion marker gene for the efficient selection of poxvirus recombinants and the Cre/loxP system to facilitate the subsequent removal of the marker. We have defined and characterized this new methodological tool by insertion of a foreign gene into vaccinia virus, with the subsequent removal of the selectable marker. We then analyzed the importance of loxP orientation during Cre recombination, and show that the SEM system can be used to introduce site-specific deletions or inversions into the viral genome. Finally, we demonstrate that the SEM strategy is amenable to other poxviruses, as demonstrated here with the creation of an ectromelia virus recombinant lacking the EVM002 gene. CONCLUSION/SIGNIFICANCE: The system described here thus provides a faster, simpler and more efficient means to create clinic-ready recombinant poxviruses for therapeutic gene therapy applications. Public Library of Science 2011-09-08 /pmc/articles/PMC3169633/ /pubmed/21931792 http://dx.doi.org/10.1371/journal.pone.0024643 Text en Rintoul 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
Rintoul, Julia L.
Wang, Jiahu
Gammon, Don B.
van Buuren, Nicholas J.
Garson, Kenneth
Jardine, Karen
Barry, Michele
Evans, David H.
Bell, John C.
A Selectable and Excisable Marker System for the Rapid Creation of Recombinant Poxviruses
title A Selectable and Excisable Marker System for the Rapid Creation of Recombinant Poxviruses
title_full A Selectable and Excisable Marker System for the Rapid Creation of Recombinant Poxviruses
title_fullStr A Selectable and Excisable Marker System for the Rapid Creation of Recombinant Poxviruses
title_full_unstemmed A Selectable and Excisable Marker System for the Rapid Creation of Recombinant Poxviruses
title_short A Selectable and Excisable Marker System for the Rapid Creation of Recombinant Poxviruses
title_sort selectable and excisable marker system for the rapid creation of recombinant poxviruses
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3169633/
https://www.ncbi.nlm.nih.gov/pubmed/21931792
http://dx.doi.org/10.1371/journal.pone.0024643
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