Literature DB >> 12057961

Phage TP901-1 site-specific integrase functions in human cells.

Stephanie M Stoll1, Daniel S Ginsburg, Michele P Calos.   

Abstract

We demonstrate that the site-specific integrase encoded by phage TP901-1 of Lactococcus lactis subsp. cremoris has potential as a tool for engineering mammalian genomes. We constructed vectors that express this integrase in Escherichia coli and in mammalian cells and developed a simple plasmid assay to measure the frequency of intramolecular integration mediated by the integrase. We used the assay to document that the integrase functions efficiently in E. coli and determined that for complete reaction in E. coli, the minimal sizes of attB and attP are 31 and 50 bp, respectively. We carried out partial purification of TP901-1 integrase protein and demonstrated its functional activity in vitro in the absence of added cofactors, characterizing the time course and temperature optimum of the reaction. Finally, we showed that when expressed in human cells, the TP901-1 integrase carries out efficient intramolecular integration on a transfected plasmid substrate in the human cell environment. The TP901-1 phage integrase thus represents a new reagent for manipulating DNA in living mammalian cells.

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Year:  2002        PMID: 12057961      PMCID: PMC135144          DOI: 10.1128/JB.184.13.3657-3663.2002

Source DB:  PubMed          Journal:  J Bacteriol        ISSN: 0021-9193            Impact factor:   3.490


  29 in total

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Authors:  L Brøndsted; K Hammer
Journal:  Appl Environ Microbiol       Date:  1999-02       Impact factor: 4.792

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6.  Complete and persistent phenotypic correction of phenylketonuria in mice by site-specific genome integration of murine phenylalanine hydroxylase cDNA.

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7.  Highly efficient in vitro site-specific recombination system based on streptomyces phage phiBT1 integrase.

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8.  Construction of transgenic Drosophila by using the site-specific integrase from phage phiC31.

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9.  A method for producing transgenic cells using a multi-integrase system on a human artificial chromosome vector.

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10.  Integrated Transcriptome and Proteome Analyses Reveal Protein Metabolism in Lactobacillus helveticus CICC22171.

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