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Ras signalling is required for inactivation of the tumour suppressor pRb cell-cycle control protein
S Mittnacht1, H Paterson, M F Olson
1CRC Centre for Molecular and Cellular Biology, The Institute of Cancer Research, Chester Beatty Laboratories, 237 Fulham Road, London, SW3 6JB, UK.
Abstract:
Ras proteins act as molecular switches, responding to signals by entering the active GTP-bound, rather than the inactive GDP-bound, state. The inhibition of normal Ras proteins by microinjection of neutralizing antibody or expression of dominant-negative mutants has shown that Ras signalling is required for growth factors to stimulate DNA synthesis [1] [2], but the link between Ras and the cell-cycle machinery is not clear. Regulation of the phosphorylation state of the retinoblastoma protein (pRb), the product of the tumour suppressor gene Rb, is a key event in the progression of cells from G1 phase into S phase. In growth-arrested or early G1 cells, pRb is hypophosphorylated and binds to transcription factors of the E2F family [3]. These pRb-E2F complexes act to suppress gene transcription required for entry into DNA synthesis either by preventing E2F from stimulating transcription or by actively repressing transcription [4]. During G1, cyclin-dependent kinases (CDKs) become activated and phosphorylate pRb at multiple sites, leading to the dissolution of pRb-E2F complexes and gene transcription [5]. Here, we have tested the hypothesis that Ras signalling is required for the inactivation of pRb. A neutralizing antibody directed against p21Ras was microinjected into cells derived from mutant mouse embryos that lack Rb or CDK inhibitors (CDKIs). Cells without pRb or the p16 CDKI were more resistant to the inhibitory effects of the anti-Ras antibody. DNA synthesis in some tumour cell lines was completely resistant to the anti-Ras injection, indicating that p21Ras is required for pRb inactivation but also has other functions in cell-cycle progression.
Insights
Ras signaling is crucial for retinoblastoma protein (pRb) inactivation, a key step in cell cycle progression. Blocking Ras inhibits DNA synthesis, but cells lacking pRb or CDK inhibitors show resistance, suggesting Ras has multiple roles.
Area of Science:
- Molecular Biology
- Cell Biology
- Oncology
Background:
- Ras proteins function as molecular switches regulating cellular signals.
- Ras signaling is essential for growth factor-stimulated DNA synthesis.
- Retinoblastoma protein (pRb) phosphorylation controls cell cycle G1 to S phase transition.
Purpose of the Study:
- To investigate the role of Ras signaling in retinoblastoma protein (pRb) inactivation.
- To determine if Ras signaling is required for the cell cycle progression from G1 to S phase.
Main Methods:
- Microinjection of neutralizing antibody against p21Ras into cells.
- Utilized mutant mouse embryo-derived cells lacking Rb or cyclin-dependent kinase inhibitors (CDKIs).
- Assessed DNA synthesis and cell-cycle progression.
Main Results:
- Inhibition of Ras signaling by anti-Ras antibody blocked DNA synthesis.
- Cells lacking pRb or the p16 CDKI were more resistant to anti-Ras antibody effects.
- Some tumor cell lines were completely resistant to anti-Ras injection, indicating alternative Ras functions.
Conclusions:
- Ras signaling is required for pRb inactivation, a critical step for cell cycle progression.
- Ras also plays other roles in cell-cycle progression beyond pRb inactivation.
- Understanding Ras pathways is vital for cancer research and therapeutic development.