Literature DB >> 21761975

Polyswitch lentivectors: "all-in-one" lentiviral vectors for drug-inducible gene expression, live selection, and recombination cloning.

Marc Giry-Laterrière1, Ophélie Cherpin, Yong-Sik Kim, Jan Jensen, Patrick Salmon.   

Abstract

Lentiviral vectors are now widely considered one of the safest and most efficient tools for gene delivery and stable gene expression. Even though inducible gene expression cassettes are mandatory for many genetic engineering strategies, most current systems suffer from various issues, such as the requirement of two vectors, which decreases the overall efficiency of the transduction, leakiness and/or insufficient levels of activation of the inducible promoter, lack of selectable marker, low titers, or general issues associated with the cloning of large plasmids. In this article, we describe the design and functional characterization of a set of "all-in-one" multicistronic autoinducible lentivectors. They combine: (1) an optimized drug-inducible promoter; (2) a multicistronic strategy to express living color, selectable marker, and transactivator; and (3) acceptor sites for easy recombination cloning of genes of interest. These polyswitch lentivectors have good titers, very low basal activity, and reversible high induced activity, and can accept a growing number of genes already cloned in entry plasmids. These combined features make them a novel, powerful, and versatile tool for current and future genetic engineering approaches.

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Year:  2011        PMID: 21761975     DOI: 10.1089/hum.2010.179

Source DB:  PubMed          Journal:  Hum Gene Ther        ISSN: 1043-0342            Impact factor:   5.695


  11 in total

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Authors:  F A Benthani; D Herrmann; P N Tran; L Pangon; M C Lucas; A H Allam; N Currey; S Al-Sohaily; M Giry-Laterriere; J Warusavitarne; P Timpson; M R J Kohonen-Corish
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5.  Tightly regulated 'all-in-one' lentiviral vectors for protection of human hematopoietic cells from anticancer chemotherapy.

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Authors:  Riccardo Bocchi; Kristof Egervari; Laura Carol-Perdiguer; Beatrice Viale; Charles Quairiaux; Mathias De Roo; Michael Boitard; Suzanne Oskouie; Patrick Salmon; Jozsef Z Kiss
Journal:  Nat Commun       Date:  2017-10-27       Impact factor: 14.919

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