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DNA transposition by protein transduction of the piggyBac transposase from lentiviral Gag precursors

DNA transposon-based vectors have emerged as gene vehicles with a wide biomedical and therapeutic potential. So far, genomic insertion of such vectors has relied on the co-delivery of genetic material encoding the gene-inserting transposase protein, raising concerns related to persistent expression,...

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Autores principales: Cai, Yujia, Bak, Rasmus O., Krogh, Louise Bechmann, Staunstrup, Nicklas H., Moldt, Brian, Corydon, Thomas J., Schrøder, Lisbeth Dahl, Mikkelsen, Jacob Giehm
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3936723/
https://www.ncbi.nlm.nih.gov/pubmed/24270790
http://dx.doi.org/10.1093/nar/gkt1163
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author Cai, Yujia
Bak, Rasmus O.
Krogh, Louise Bechmann
Staunstrup, Nicklas H.
Moldt, Brian
Corydon, Thomas J.
Schrøder, Lisbeth Dahl
Mikkelsen, Jacob Giehm
author_facet Cai, Yujia
Bak, Rasmus O.
Krogh, Louise Bechmann
Staunstrup, Nicklas H.
Moldt, Brian
Corydon, Thomas J.
Schrøder, Lisbeth Dahl
Mikkelsen, Jacob Giehm
author_sort Cai, Yujia
collection PubMed
description DNA transposon-based vectors have emerged as gene vehicles with a wide biomedical and therapeutic potential. So far, genomic insertion of such vectors has relied on the co-delivery of genetic material encoding the gene-inserting transposase protein, raising concerns related to persistent expression, insertional mutagenesis and cytotoxicity. This report describes potent DNA transposition achieved by direct delivery of transposase protein. By adapting integrase-deficient lentiviral particles (LPs) as carriers of the hyperactive piggyBac transposase protein (hyPBase), we demonstrate rates of DNA transposition that are comparable with the efficiency of a conventional plasmid-based strategy. Embedded in the Gag polypeptide, hyPBase is robustly incorporated into LPs and liberated from the viral proteins by the viral protease during particle maturation. We demonstrate lentiviral co-delivery of the transposase protein and vector RNA carrying the transposon sequence, allowing robust DNA transposition in a variety of cell types. Importantly, this novel delivery method facilitates a balanced cellular uptake of hyPBase, as shown by confocal microscopy, and allows high-efficiency production of clones harboring a single transposon insertion. Our findings establish engineered LPs as a new tool for transposase delivery. We believe that protein transduction methods will increase applicability and safety of DNA transposon-based vector technologies.
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spelling pubmed-39367232014-03-04 DNA transposition by protein transduction of the piggyBac transposase from lentiviral Gag precursors Cai, Yujia Bak, Rasmus O. Krogh, Louise Bechmann Staunstrup, Nicklas H. Moldt, Brian Corydon, Thomas J. Schrøder, Lisbeth Dahl Mikkelsen, Jacob Giehm Nucleic Acids Res Methods Online DNA transposon-based vectors have emerged as gene vehicles with a wide biomedical and therapeutic potential. So far, genomic insertion of such vectors has relied on the co-delivery of genetic material encoding the gene-inserting transposase protein, raising concerns related to persistent expression, insertional mutagenesis and cytotoxicity. This report describes potent DNA transposition achieved by direct delivery of transposase protein. By adapting integrase-deficient lentiviral particles (LPs) as carriers of the hyperactive piggyBac transposase protein (hyPBase), we demonstrate rates of DNA transposition that are comparable with the efficiency of a conventional plasmid-based strategy. Embedded in the Gag polypeptide, hyPBase is robustly incorporated into LPs and liberated from the viral proteins by the viral protease during particle maturation. We demonstrate lentiviral co-delivery of the transposase protein and vector RNA carrying the transposon sequence, allowing robust DNA transposition in a variety of cell types. Importantly, this novel delivery method facilitates a balanced cellular uptake of hyPBase, as shown by confocal microscopy, and allows high-efficiency production of clones harboring a single transposon insertion. Our findings establish engineered LPs as a new tool for transposase delivery. We believe that protein transduction methods will increase applicability and safety of DNA transposon-based vector technologies. Oxford University Press 2014-02 2013-11-21 /pmc/articles/PMC3936723/ /pubmed/24270790 http://dx.doi.org/10.1093/nar/gkt1163 Text en © The Author(s) 2013. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Methods Online
Cai, Yujia
Bak, Rasmus O.
Krogh, Louise Bechmann
Staunstrup, Nicklas H.
Moldt, Brian
Corydon, Thomas J.
Schrøder, Lisbeth Dahl
Mikkelsen, Jacob Giehm
DNA transposition by protein transduction of the piggyBac transposase from lentiviral Gag precursors
title DNA transposition by protein transduction of the piggyBac transposase from lentiviral Gag precursors
title_full DNA transposition by protein transduction of the piggyBac transposase from lentiviral Gag precursors
title_fullStr DNA transposition by protein transduction of the piggyBac transposase from lentiviral Gag precursors
title_full_unstemmed DNA transposition by protein transduction of the piggyBac transposase from lentiviral Gag precursors
title_short DNA transposition by protein transduction of the piggyBac transposase from lentiviral Gag precursors
title_sort dna transposition by protein transduction of the piggybac transposase from lentiviral gag precursors
topic Methods Online
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3936723/
https://www.ncbi.nlm.nih.gov/pubmed/24270790
http://dx.doi.org/10.1093/nar/gkt1163
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