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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.
Abstract:
Transcription of the protooncogene c-fos is increased greater than 10-fold within minutes of treatment of fibroblasts with serum or purified growth factors. Recent experiments with mouse 3T3 cell lines containing inducible fos antisense RNA constructs have shown that induced fos antisense RNA transcripts cause either a marked inhibition of growth in continuously proliferating cells or, conversely, a minimal effect except during the transition from a quiescent (G0) state into the cell cycle. Since intracellular production of large amounts of antisense RNA does not completely block gene expression, we microinjected affinity-purified antibodies raised against fos to determine whether and when during the cell cycle c-fos expression was required for cell proliferation. Using this independent method, we found that microinjected fos antibodies efficiently blocked serum-stimulated DNA synthesis when injected up to 6 to 8 h after serum stimulation of quiescent REF-52 fibroblasts. Furthermore, when fos antibodies were injected into asynchronously growing cells, a consistently greater number of cells was prevented from synthesizing DNA than when cells were injected with nonspecific immunoglobulins. Thus, whereas the activity of c-fos may be necessary for transition of fibroblasts from G0 to G1 of the cell cycle, its function is also required during the early G1 portion of the cell cycle to allow subsequent DNA synthesis.
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.