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A double-Flp-in method for stable overexpression of two genes
by
Jensen, Ole
, Geyer, Joachim
, Ansari, Salim
, Brockmöller, Jürgen
, Tzvetkov, Mladen V.
, Gebauer, Lukas
, Müller, Simon F.
, Lowjaga, Kira A. A. T.
in
631/154/436/1729
/ 631/1647/2300/1514
/ 631/1647/2300/1851
/ 631/208/199
/ 631/61/2300/1514
/ 631/61/2300/1851
/ Antibiotics
/ Cell lines
/ Cloning
/ Cytochrome P-450 CYP2C19 - genetics
/ Drug metabolism
/ Enzymes
/ Flow Cytometry
/ Gene Expression
/ Genes
/ Genetic engineering
/ Genetic Vectors
/ Genomes
/ HEK293 Cells
/ Humanities and Social Sciences
/ Humans
/ Integration
/ Mammalian cells
/ Metabolism
/ Metabolites
/ multidisciplinary
/ Octamer Transcription Factor-1 - genetics
/ Pharmacology
/ Plasmids
/ Polymerase Chain Reaction - methods
/ Promoter Regions, Genetic
/ Proof of Concept Study
/ Proteins
/ Reproducibility
/ Reproducibility of Results
/ Science
/ Science (multidisciplinary)
/ Transfection
/ Transfection - methods
2020
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A double-Flp-in method for stable overexpression of two genes
by
Jensen, Ole
, Geyer, Joachim
, Ansari, Salim
, Brockmöller, Jürgen
, Tzvetkov, Mladen V.
, Gebauer, Lukas
, Müller, Simon F.
, Lowjaga, Kira A. A. T.
in
631/154/436/1729
/ 631/1647/2300/1514
/ 631/1647/2300/1851
/ 631/208/199
/ 631/61/2300/1514
/ 631/61/2300/1851
/ Antibiotics
/ Cell lines
/ Cloning
/ Cytochrome P-450 CYP2C19 - genetics
/ Drug metabolism
/ Enzymes
/ Flow Cytometry
/ Gene Expression
/ Genes
/ Genetic engineering
/ Genetic Vectors
/ Genomes
/ HEK293 Cells
/ Humanities and Social Sciences
/ Humans
/ Integration
/ Mammalian cells
/ Metabolism
/ Metabolites
/ multidisciplinary
/ Octamer Transcription Factor-1 - genetics
/ Pharmacology
/ Plasmids
/ Polymerase Chain Reaction - methods
/ Promoter Regions, Genetic
/ Proof of Concept Study
/ Proteins
/ Reproducibility
/ Reproducibility of Results
/ Science
/ Science (multidisciplinary)
/ Transfection
/ Transfection - methods
2020
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A double-Flp-in method for stable overexpression of two genes
by
Jensen, Ole
, Geyer, Joachim
, Ansari, Salim
, Brockmöller, Jürgen
, Tzvetkov, Mladen V.
, Gebauer, Lukas
, Müller, Simon F.
, Lowjaga, Kira A. A. T.
in
631/154/436/1729
/ 631/1647/2300/1514
/ 631/1647/2300/1851
/ 631/208/199
/ 631/61/2300/1514
/ 631/61/2300/1851
/ Antibiotics
/ Cell lines
/ Cloning
/ Cytochrome P-450 CYP2C19 - genetics
/ Drug metabolism
/ Enzymes
/ Flow Cytometry
/ Gene Expression
/ Genes
/ Genetic engineering
/ Genetic Vectors
/ Genomes
/ HEK293 Cells
/ Humanities and Social Sciences
/ Humans
/ Integration
/ Mammalian cells
/ Metabolism
/ Metabolites
/ multidisciplinary
/ Octamer Transcription Factor-1 - genetics
/ Pharmacology
/ Plasmids
/ Polymerase Chain Reaction - methods
/ Promoter Regions, Genetic
/ Proof of Concept Study
/ Proteins
/ Reproducibility
/ Reproducibility of Results
/ Science
/ Science (multidisciplinary)
/ Transfection
/ Transfection - methods
2020
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A double-Flp-in method for stable overexpression of two genes
Journal Article
A double-Flp-in method for stable overexpression of two genes
2020
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Overview
Overexpression of single genes in mammalian cells is widely used to investigate protein function in basic and applied biosciences and in drug research. A better understanding of interactions of two proteins is an important next step in the advancement of our understanding of complex biological systems. However, simultaneous and robust overexpression of two or more genes is challenging. The Flp-In system integrates a vector into cell lines at a specific genomic locus, but has not been used for integration of more than one gene. Here we present a modification of the Flp-In system that enables the simultaneous targeted integration of two genes. We describe the modification and generation of the vectors required and give the complete protocol for transfection and validation of correct genomic integration and expression. We also provide results on the stability and reproducibility, and we functionally validated this approach with a pharmacologically relevant combination of a membrane transporter facilitating drug uptake and an enzyme mediating drug metabolism.
Publisher
Nature Publishing Group UK,Nature Publishing Group
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