Related Experiment Videos

Microinjection of fos-specific antibodies blocks DNA synthesis in fibroblast cells

K T Riabowol1, R J Vosatka, E B Ziff

  • 1Cold Spring Harbor Laboratory, New York 11724.

Insights

Protooncogene c-fos is crucial for fibroblast cell cycle progression. Blocking c-fos activity with antibodies prevents DNA synthesis, highlighting its role in the G0 to G1 transition and early G1 phase.

Area of Science:

  • Molecular Biology
  • Cell Biology
  • Oncogenesis

Background:

  • Protooncogene c-fos transcription is rapidly induced by growth factors in fibroblasts.
  • Previous studies using antisense RNA showed c-fos is important for cell cycle entry from quiescence.

Purpose of the Study:

  • To investigate the precise role and cell cycle timing of c-fos expression in fibroblast proliferation.
  • To determine if c-fos activity is essential for DNA synthesis using an independent method.

Main Methods:

  • Microinjection of affinity-purified antibodies against c-fos into fibroblasts.
  • Assessment of DNA synthesis following antibody injection at different time points after serum stimulation.
  • Comparison with control injections using nonspecific immunoglobulins.

Main Results:

  • Microinjected c-fos antibodies blocked serum-stimulated DNA synthesis up to 6-8 hours post-stimulation in quiescent cells.
  • Antibody injection into asynchronously growing cells significantly inhibited DNA synthesis compared to controls.
  • c-fos activity is required for both the G0 to G1 transition and early G1 phase progression.

Conclusions:

  • c-fos expression is essential for fibroblasts to exit quiescence and enter the cell cycle.
  • c-fos function is also required during early G1 for the initiation of DNA synthesis.
  • Antibody-mediated inhibition provides a robust method to study c-fos function during the cell cycle.

Related Concept Videos