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.

Bio-Protocol
|February 17, 2025
PubMed

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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