Tet-on System

The Tet-on system is an inducible gene-expression method that lets researchers activate a chosen gene with tetracycline or doxycycline, providing temporal control over protein production in cells. In a typical design, a reverse tetracycline-controlled transactivator (rtTA) binds tetracycline response elements (TREs) only when the inducer is present, recruiting transcriptional machinery and switching on the linked transgene. Removing the inducer reduces activation, although response depends on construct design, dose, exposure time, and cell type. This system supports controlled studies of gene function, signaling pathways, development, disease mechanisms, and therapeutic protein production while limiting effects from continuous transgene expression.

Tet-on System - Related Videos

Research

JoVE Journal - Biology

Generation of Stable Human Cell Lines with Tetracycline-inducible (Tet-on) shRNA or cDNA Expression

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Cited by 16 •

2013

A rapid and simple way to generate human cell lines with inducible and reversible cDNA overexpression or shRNA-mediated knock-down of the gene of interest. This method enables researchers to reliably and highly reproducibly manipulate cell lines that are difficult to alter by transient transfection methods or conventional knockdown/knockout strategies.

Inducible Tet-Off Regulatable System: An In Vitro Method to Modulate Gene Expression in Cultured Cells Using Tetracycline-Off System

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2025

This video describes the method of regulating gene expression in cultured cells by transfection with a plasmid containing a gene of interest and a regulatory plasmid. The expression of this plasmid can be controlled by tetracycline or its synthetic analogs, making this system a useful model to study regulatable gene expression.

Inducible Tet-On Regulatable System-Based Gene Expression In Vivo: A Tetracycline-Induced Gene Expression System for Target Gene Transcription Activation in Mouse Model

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2025

This video demonstrates the tetracycline, or Tet-On, gene expression system in a mouse model. In the presence of doxycycline, a tetracycline derivative, the Tet-On system consisting of reverse tetracycline-controlled transactivator protein becomes activated and expresses the gene of interest.

Monitoring Electroporation-Induced Changes in Action Potential Generation in Genetically Engineered Tet-On Spiking HEK cells

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Cited by 1 •

2024

For studying responses of excitable cells in vitro, the protocol describes optical monitoring of changes in action potential generation due to electroporation on a simple excitable cell model of genetically engineered tet-on spiking HEK cells as well as changes in transmembrane voltage with automated extraction of relevant parameters.

Use of the TetON System to Study Molecular Mechanisms of Zebrafish Regeneration

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Cited by 10 •

2015

Here we outline the workflow for using the TetON system to achieve tissue-specific gene expression in the adult regenerating zebrafish tail fin.

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