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The cumate gene-switch: a system for regulated expression in mammalian cells

BACKGROUND: A number of expression systems have been developed where transgene expression can be regulated. They all have specific characteristics making them more suitable for certain applications than for others. Since some applications require the regulation of several genes, there is a need for...

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Autores principales: Mullick, Alaka, Xu, Yan, Warren, René, Koutroumanis, Maria, Guilbault, Claire, Broussau, Sophie, Malenfant, Félix, Bourget, Lucie, Lamoureux, Linda, Lo, Rita, Caron, Antoine W, Pilotte, Amelie, Massie, Bernard
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1654148/
https://www.ncbi.nlm.nih.gov/pubmed/17083727
http://dx.doi.org/10.1186/1472-6750-6-43
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author Mullick, Alaka
Xu, Yan
Warren, René
Koutroumanis, Maria
Guilbault, Claire
Broussau, Sophie
Malenfant, Félix
Bourget, Lucie
Lamoureux, Linda
Lo, Rita
Caron, Antoine W
Pilotte, Amelie
Massie, Bernard
author_facet Mullick, Alaka
Xu, Yan
Warren, René
Koutroumanis, Maria
Guilbault, Claire
Broussau, Sophie
Malenfant, Félix
Bourget, Lucie
Lamoureux, Linda
Lo, Rita
Caron, Antoine W
Pilotte, Amelie
Massie, Bernard
author_sort Mullick, Alaka
collection PubMed
description BACKGROUND: A number of expression systems have been developed where transgene expression can be regulated. They all have specific characteristics making them more suitable for certain applications than for others. Since some applications require the regulation of several genes, there is a need for a variety of independent yet compatible systems. RESULTS: We have used the regulatory mechanisms of bacterial operons (cmt and cym) to regulate gene expression in mammalian cells using three different strategies. In the repressor configuration, regulation is mediated by the binding of the repressor (CymR) to the operator site (CuO), placed downstream of a strong constitutive promoter. Addition of cumate, a small molecule, relieves the repression. In the transactivator configuration, a chimaeric transactivator (cTA) protein, formed by the fusion of CymR with the activation domain of VP16, is able to activate transcription when bound to multiple copies of CuO, placed upstream of the CMV minimal promoter. Cumate addition abrogates DNA binding and therefore transactivation by cTA. Finally, an adenoviral library of cTA mutants was screened to identify a reverse cumate activator (rcTA), which activates transcription in the presence rather than the absence of cumate. CONCLUSION: We report the generation of a new versatile inducible expression system.
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spelling pubmed-16541482006-11-21 The cumate gene-switch: a system for regulated expression in mammalian cells Mullick, Alaka Xu, Yan Warren, René Koutroumanis, Maria Guilbault, Claire Broussau, Sophie Malenfant, Félix Bourget, Lucie Lamoureux, Linda Lo, Rita Caron, Antoine W Pilotte, Amelie Massie, Bernard BMC Biotechnol Methodology Article BACKGROUND: A number of expression systems have been developed where transgene expression can be regulated. They all have specific characteristics making them more suitable for certain applications than for others. Since some applications require the regulation of several genes, there is a need for a variety of independent yet compatible systems. RESULTS: We have used the regulatory mechanisms of bacterial operons (cmt and cym) to regulate gene expression in mammalian cells using three different strategies. In the repressor configuration, regulation is mediated by the binding of the repressor (CymR) to the operator site (CuO), placed downstream of a strong constitutive promoter. Addition of cumate, a small molecule, relieves the repression. In the transactivator configuration, a chimaeric transactivator (cTA) protein, formed by the fusion of CymR with the activation domain of VP16, is able to activate transcription when bound to multiple copies of CuO, placed upstream of the CMV minimal promoter. Cumate addition abrogates DNA binding and therefore transactivation by cTA. Finally, an adenoviral library of cTA mutants was screened to identify a reverse cumate activator (rcTA), which activates transcription in the presence rather than the absence of cumate. CONCLUSION: We report the generation of a new versatile inducible expression system. BioMed Central 2006-11-03 /pmc/articles/PMC1654148/ /pubmed/17083727 http://dx.doi.org/10.1186/1472-6750-6-43 Text en Copyright © 2006 Mullick et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Methodology Article
Mullick, Alaka
Xu, Yan
Warren, René
Koutroumanis, Maria
Guilbault, Claire
Broussau, Sophie
Malenfant, Félix
Bourget, Lucie
Lamoureux, Linda
Lo, Rita
Caron, Antoine W
Pilotte, Amelie
Massie, Bernard
The cumate gene-switch: a system for regulated expression in mammalian cells
title The cumate gene-switch: a system for regulated expression in mammalian cells
title_full The cumate gene-switch: a system for regulated expression in mammalian cells
title_fullStr The cumate gene-switch: a system for regulated expression in mammalian cells
title_full_unstemmed The cumate gene-switch: a system for regulated expression in mammalian cells
title_short The cumate gene-switch: a system for regulated expression in mammalian cells
title_sort cumate gene-switch: a system for regulated expression in mammalian cells
topic Methodology Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1654148/
https://www.ncbi.nlm.nih.gov/pubmed/17083727
http://dx.doi.org/10.1186/1472-6750-6-43
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