Cargando…

A Transposon-Mediated System for Flexible Control of Transgene Expression in Stem and Progenitor-Derived Lineages

Precise methods for transgene regulation are important to study signaling pathways and cell lineages in biological systems where gene function is often recycled within and across lineages. We engineered a genetic toolset for flexible transgene regulation in these diverse cellular contexts. Specifica...

Descripción completa

Detalles Bibliográficos
Autores principales: Akhtar, Aslam Abbasi, Molina, Jessica, Dutra-Clarke, Marina, Kim, Gi Bum, Levy, Rachelle, Schreiber-Stainthorp, William, Danielpour, Moise, Breunig, Joshua J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4375828/
https://www.ncbi.nlm.nih.gov/pubmed/25702640
http://dx.doi.org/10.1016/j.stemcr.2015.01.013
_version_ 1782363641229606912
author Akhtar, Aslam Abbasi
Molina, Jessica
Dutra-Clarke, Marina
Kim, Gi Bum
Levy, Rachelle
Schreiber-Stainthorp, William
Danielpour, Moise
Breunig, Joshua J.
author_facet Akhtar, Aslam Abbasi
Molina, Jessica
Dutra-Clarke, Marina
Kim, Gi Bum
Levy, Rachelle
Schreiber-Stainthorp, William
Danielpour, Moise
Breunig, Joshua J.
author_sort Akhtar, Aslam Abbasi
collection PubMed
description Precise methods for transgene regulation are important to study signaling pathways and cell lineages in biological systems where gene function is often recycled within and across lineages. We engineered a genetic toolset for flexible transgene regulation in these diverse cellular contexts. Specifically, we created an optimized piggyBac transposon-based system, allowing for the facile generation of stably transduced cell lineages in vivo and in vitro. The system, termed pB-Tet-GOI (piggyBac-transposable tetracycline transactivator-mediated flexible expression of a genetic element of interest), incorporates the latest generation of tetracycline (Tet) transactivator and reverse Tet transactivator variants—along with engineered mutants—in order to provide regulated transgene expression upon addition or removal of doxycycline (dox). Altogether, the flexibility of the system allows for dox-induced, dox-suppressed, dox-resistant (i.e., constitutive), and dox-induced/constitutive regulation of transgenes. This versatile strategy provides reversible temporal regulation of transgenes with robust inducibility and minimal leakiness.
format Online
Article
Text
id pubmed-4375828
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-43758282015-04-03 A Transposon-Mediated System for Flexible Control of Transgene Expression in Stem and Progenitor-Derived Lineages Akhtar, Aslam Abbasi Molina, Jessica Dutra-Clarke, Marina Kim, Gi Bum Levy, Rachelle Schreiber-Stainthorp, William Danielpour, Moise Breunig, Joshua J. Stem Cell Reports Report Precise methods for transgene regulation are important to study signaling pathways and cell lineages in biological systems where gene function is often recycled within and across lineages. We engineered a genetic toolset for flexible transgene regulation in these diverse cellular contexts. Specifically, we created an optimized piggyBac transposon-based system, allowing for the facile generation of stably transduced cell lineages in vivo and in vitro. The system, termed pB-Tet-GOI (piggyBac-transposable tetracycline transactivator-mediated flexible expression of a genetic element of interest), incorporates the latest generation of tetracycline (Tet) transactivator and reverse Tet transactivator variants—along with engineered mutants—in order to provide regulated transgene expression upon addition or removal of doxycycline (dox). Altogether, the flexibility of the system allows for dox-induced, dox-suppressed, dox-resistant (i.e., constitutive), and dox-induced/constitutive regulation of transgenes. This versatile strategy provides reversible temporal regulation of transgenes with robust inducibility and minimal leakiness. Elsevier 2015-02-19 /pmc/articles/PMC4375828/ /pubmed/25702640 http://dx.doi.org/10.1016/j.stemcr.2015.01.013 Text en © 2015 The Authors http://creativecommons.org/licenses/by-nc-nd/3.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/3.0/).
spellingShingle Report
Akhtar, Aslam Abbasi
Molina, Jessica
Dutra-Clarke, Marina
Kim, Gi Bum
Levy, Rachelle
Schreiber-Stainthorp, William
Danielpour, Moise
Breunig, Joshua J.
A Transposon-Mediated System for Flexible Control of Transgene Expression in Stem and Progenitor-Derived Lineages
title A Transposon-Mediated System for Flexible Control of Transgene Expression in Stem and Progenitor-Derived Lineages
title_full A Transposon-Mediated System for Flexible Control of Transgene Expression in Stem and Progenitor-Derived Lineages
title_fullStr A Transposon-Mediated System for Flexible Control of Transgene Expression in Stem and Progenitor-Derived Lineages
title_full_unstemmed A Transposon-Mediated System for Flexible Control of Transgene Expression in Stem and Progenitor-Derived Lineages
title_short A Transposon-Mediated System for Flexible Control of Transgene Expression in Stem and Progenitor-Derived Lineages
title_sort transposon-mediated system for flexible control of transgene expression in stem and progenitor-derived lineages
topic Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4375828/
https://www.ncbi.nlm.nih.gov/pubmed/25702640
http://dx.doi.org/10.1016/j.stemcr.2015.01.013
work_keys_str_mv AT akhtaraslamabbasi atransposonmediatedsystemforflexiblecontroloftransgeneexpressioninstemandprogenitorderivedlineages
AT molinajessica atransposonmediatedsystemforflexiblecontroloftransgeneexpressioninstemandprogenitorderivedlineages
AT dutraclarkemarina atransposonmediatedsystemforflexiblecontroloftransgeneexpressioninstemandprogenitorderivedlineages
AT kimgibum atransposonmediatedsystemforflexiblecontroloftransgeneexpressioninstemandprogenitorderivedlineages
AT levyrachelle atransposonmediatedsystemforflexiblecontroloftransgeneexpressioninstemandprogenitorderivedlineages
AT schreiberstainthorpwilliam atransposonmediatedsystemforflexiblecontroloftransgeneexpressioninstemandprogenitorderivedlineages
AT danielpourmoise atransposonmediatedsystemforflexiblecontroloftransgeneexpressioninstemandprogenitorderivedlineages
AT breunigjoshuaj atransposonmediatedsystemforflexiblecontroloftransgeneexpressioninstemandprogenitorderivedlineages
AT akhtaraslamabbasi transposonmediatedsystemforflexiblecontroloftransgeneexpressioninstemandprogenitorderivedlineages
AT molinajessica transposonmediatedsystemforflexiblecontroloftransgeneexpressioninstemandprogenitorderivedlineages
AT dutraclarkemarina transposonmediatedsystemforflexiblecontroloftransgeneexpressioninstemandprogenitorderivedlineages
AT kimgibum transposonmediatedsystemforflexiblecontroloftransgeneexpressioninstemandprogenitorderivedlineages
AT levyrachelle transposonmediatedsystemforflexiblecontroloftransgeneexpressioninstemandprogenitorderivedlineages
AT schreiberstainthorpwilliam transposonmediatedsystemforflexiblecontroloftransgeneexpressioninstemandprogenitorderivedlineages
AT danielpourmoise transposonmediatedsystemforflexiblecontroloftransgeneexpressioninstemandprogenitorderivedlineages
AT breunigjoshuaj transposonmediatedsystemforflexiblecontroloftransgeneexpressioninstemandprogenitorderivedlineages