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Generation of Stable Human Cell Lines with Tetracycline-inducible (Tet-on) shRNA or cDNA Expression
Published on: March 5, 2013
Generation of stable human cell lines with Tetracycline-inducible (Tet-on) shRNA or cDNA expression
Marta Gomez-Martinez1, Debora Schmitz, Alexander Hergovich
1UCL Cancer Institute, UK.
Abstract:
A major approach in the field of mammalian cell biology is the manipulation of the expression of genes of interest in selected cell lines, with the aim to reveal one or several of the gene's function(s) using transient/stable overexpression or knockdown of the gene of interest. Unfortunately, for various cell biological investigations this approach is unsuitable when manipulations of gene expression result in cell growth/proliferation defects or unwanted cell differentiation. Therefore, researchers have adapted the Tetracycline repressor protein (TetR), taken from the E. coli tetracycline resistance operon(1), to generate very efficient and tight regulatory systems to express cDNAs in mammalian cells(2,3). In short, TetR has been modified to either (1) block initiation of transcription by binding to the Tet-operator (TO) in the promoter region upon addition of tetracycline (termed Tet-off system) or (2) bind to the TO in the absence of tetracycline (termed Tet-on system) (Figure 1). Given the inconvenience that the Tet-off system requires the continuous presence of tetracycline (which has a half-life of about 24 hr in tissue cell culture medium) the Tet-on system has been more extensively optimized, resulting in the development of very tight and efficient vector systems for cDNA expression as used here. Shortly after establishment of RNA interference (RNAi) for gene knockdown in mammalian cells(4), vectors expressing short-hairpin RNAs (shRNAs) were described that function very similar to siRNAs(5-11). However, these shRNA-mediated knockdown approaches have the same limitation as conventional knockout strategies, since stable depletion is not feasible when gene targets are essential for cellular survival. To overcome this limitation, van de Wetering et al.(12) modified the shRNA expression vector pSUPER(5) by inserting a TO in the promoter region, which enabled them to generate stable cell lines with tetracycline-inducible depletion of their target genes of interest. Here, we describe a method to efficiently generate stable human Tet-on cell lines that reliably drive either inducible overexpression or depletion of the gene of interest. Using this method, we have successfully generated Tet-on cell lines which significantly facilitated the analysis of the MST/hMOB/NDR cascade in centrosome(13,14) and apoptosis signaling(15,16). In this report, we describe our vectors of choice, in addition to describing the two consecutive manipulation steps that are necessary to efficiently generate human Tet-on cell lines (Figure 2). Moreover, besides outlining a protocol for the generation of human Tet-on cell lines, we will discuss critical aspects regarding the technical procedures and the characterization of Tet-on cells.
Insights
Researchers developed a method for creating stable human Tet-on cell lines, enabling precise control over gene expression for overexpression or knockdown. This technique overcomes limitations in studying essential genes, facilitating research in cell biology and signaling pathways.
Area of Science:
- Mammalian cell biology
- Gene expression regulation
- Molecular genetics
Background:
- Gene manipulation is crucial for understanding gene function in mammalian cells.
- Traditional methods like overexpression or knockdown are limited when gene manipulation affects cell viability or differentiation.
- Tetracycline-inducible systems (Tet-on/Tet-off) offer precise gene expression control, overcoming limitations of conventional approaches.
Purpose of the Study:
- To describe an efficient method for generating stable human Tet-on cell lines.
- To enable reliable inducible overexpression or depletion of genes of interest.
- To facilitate the study of gene function in critical cellular processes.
Main Methods:
- Adaptation of Tetracycline repressor protein (TetR) for inducible gene expression.
- Development of Tet-on systems for tight and efficient cDNA expression.
- Modification of shRNA expression vectors with Tet-operator (TO) for inducible gene knockdown.
Main Results:
- Successful generation of stable human Tet-on cell lines for inducible gene overexpression and depletion.
- Demonstrated efficiency in facilitating the analysis of signaling cascades (e.g., MST/hMOB/NDR).
- Provided a reliable protocol for generating and characterizing Tet-on cell lines.
Conclusions:
- The described method provides a robust platform for studying gene function in mammalian cells.
- Tet-on systems are valuable tools for overcoming limitations in gene essentiality studies.
- This approach significantly advances research in centrosome and apoptosis signaling pathways.
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