Related Experiment Videos

Simple and fast method to test the receptor for advanced glycosylated endproducts (RAGE) for its tumor suppressive

I Bendik1, P Schraml, C U Ludwig

  • 1Department of Research, University Hospital Basel, Switzerland. Bendik@ubaclu.unibas.ch

Insights

This study introduces a faster method for creating Tet-On gene expression systems, enabling quicker analysis of how the receptor for advanced glycosylation endproducts (RAGE) affects cell growth and tumor potential.

Area of Science:

  • Molecular Biology
  • Cancer Biology
  • Gene Expression Systems

Background:

  • The Tet gene expression system offers doxycycline-inducible control over gene expression.
  • Analyzing the role of the receptor for advanced glycosylation endproducts (RAGE) in cell growth requires stable gene expression systems.
  • Traditional Tet-On system establishment involves two sequential stable transfections, which is time-consuming.

Purpose of the Study:

  • To develop a streamlined, single-step transfection protocol for establishing Tet-On gene expression systems.
  • To apply this improved system for investigating the influence of RAGE on 293 cell growth in semi-solid medium.
  • To assess the tumor suppressive potential of RAGE using a clonogenic assay.

Main Methods:

  • Co-transfection of plasmids for regulated RAGE expression and a selectable marker in a 6:1 molar ratio.
  • Aminoglycoside selection followed by PCR screening of clones.
  • Western blot analysis to confirm inducible RAGE expression.
  • Clonogenic assays to evaluate cell growth and RAGE's tumor suppressive effects.

Main Results:

  • A single-step co-transfection protocol successfully generated double stably transformed cell lines.
  • Out of 29 analyzed clones, 8 were confirmed as double stably transformed via PCR.
  • Inducible RAGE expression was validated in 7 of these cell lines through Western blot.
  • The one-step protocol significantly reduced the time required for Tet-On system establishment.

Conclusions:

  • The developed one-step protocol is an efficient alternative for creating Tet-On systems in tumor biology research.
  • This method accelerates the generation of stable cell lines for studying gene function, such as RAGE's role in cancer.
  • The study provides a foundation for further investigation into RAGE's tumor suppressive potential.

Related Concept Videos