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Updated: May 27, 2025

Transfecting RAW264.7 Cells with a Luciferase Reporter Gene
Published on: June 18, 2015
Using the Sleeping Beauty Transposon System for Doxycycline-inducible Gene Expression in RAW264.7 Macrophage Cells to
Parsa Kamali1, Gregory D Fairn1,2
1Dept of Biochemistry and Molecular Biology, Dalhousie University, Halifax, NS, Canada.
Abstract:
Macrophages are known for engulfing and digesting pathogens and dead cells through a specialized form of endocytosis called phagocytosis. Unfortunately, many macrophage cell lines are refractory to most reagents used for transient transfections. Alternative transient approaches, such as electroporation or transduction with lentiviral vectors, typically cause cell death (electroporation) or can be time-consuming to generate numerous lentivirus when using different genes of interest. Therefore, we use the Sleeping Beauty system to generate stably transfected cells. The system uses a "resurrected" transposase gene named Sleeping Beauty found in salmonid fish. Experimentally, the system introduces two plasmids: one carrying the Sleeping Beauty transposase and the other with an integration cassette carrying the gene of interest, a reverse-doxycycline controlled repressor gene, and an antibiotic resistance gene. The construct used in this protocol provides puromycin resistance. Stable integrations are selected by culturing the cells in the presence of puromycin, and further enrichment can be obtained using fluorescence-activated cell sorting (FACS). In this protocol, we use the Sleeping Beauty transposon system to generate RAW264.7 cells with doxycycline-inducible inositol polyphosphate 4-phosphatase B containing a C-terminal CaaX motif (INPP4B-CaaX). INPP4B-CaaX dephosphorylates the D-4 position of phosphatidylinositol 3,4-bisphosphate and inhibits phagocytosis. One benefit is that generating stable cell lines is substantially faster than selecting for random integrations. Without FACS, the method typically gives ~50% of the cells that are transfected; with sorting, this approaches 100%. This makes phagocytosis experiments easier since more cells can be analyzed per experiment, allowing for population-based measurements where a ~10% transient transfection rate is insufficient. Finally, using the doxycycline-promoter allows for low near endogenous expression of proteins or robust overexpression. Key features • This protocol builds on the protocols and reagents developed by Kowarz et al. [1] and extends it to using RAW macrophages. • Allows for the rapid generation of stably induced cell lines. • This protocol also determines the phagocytic index and efficiency.
Insights
Generating stable RAW264.7 macrophage cell lines for phagocytosis research is streamlined using the Sleeping Beauty transposon system. This method rapidly creates doxycycline-inducible cell lines, enhancing phagocytosis experiments with improved transfection efficiency and expression control.
Area of Science:
- Cell Biology
- Molecular Biology
- Immunology
Background:
- Macrophages are crucial immune cells involved in phagocytosis, the process of engulfing pathogens and cellular debris.
- Traditional transient transfection methods are inefficient and challenging in many macrophage cell lines, including RAW264.7.
- Alternative methods like electroporation and lentiviral transduction have drawbacks, including cell death and time-consuming procedures.
Purpose of the Study:
- To establish a rapid and efficient method for generating stably transfected RAW264.7 macrophage cell lines.
- To create RAW264.7 cells with doxycycline-inducible expression of inositol polyphosphate 4-phosphatase B containing a C-terminal CaaX motif (INPP4B-CaaX).
- To facilitate phagocytosis research by improving cell line generation and experimental analysis.
Main Methods:
- Utilized the Sleeping Beauty transposon system, involving two plasmids: one for the Sleeping Beauty transposase and another for the integration cassette.
- The integration cassette contained the gene of interest (INPP4B-CaaX), a reverse-doxycycline controlled repressor, and a puromycin resistance gene.
- Selected stable transfectants using puromycin and optionally enriched using fluorescence-activated cell sorting (FACS).
Main Results:
- Successfully generated RAW264.7 cell lines with stable, doxycycline-inducible expression of INPP4B-CaaX.
- The Sleeping Beauty system significantly reduced the time required for stable cell line generation compared to random integration methods.
- Achieved high transfection efficiency, approaching 100% with FACS enrichment, enabling more robust phagocytosis experiments.
Conclusions:
- The Sleeping Beauty transposon system provides a rapid and efficient method for generating stably transfected RAW264.7 macrophage cell lines.
- This protocol enables precise control over protein expression levels (low to high) via doxycycline induction.
- The generated cell lines are suitable for detailed studies of phagocytosis, including the determination of phagocytic index and efficiency.
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