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Ras-GTPase activating protein inhibition specifically induces apoptosis of tumour cells
V Leblanc1, I Delumeau, B Tocqué
1ExonHit Therapeutics, 65 Bld Massena, 75013 Paris, France.
Abstract:
Oncogenes and tumour suppressor genes control the balance between apoptotic death and anti-apoptotic survival signals determining whether a cell proliferates or dies. Through which effectors might oncoproteins generate sensitivity to apoptosis remains to be determined. Ras GTPase activating protein (Ras-GAP) is a key element in the Ras signalling pathway, being both a negative regulator and possibly an effector of Ras. Ras-GAP acts as a regulator of transcription, and possibly connects Ras to stress-activated protein kinases. A role for Ras-GAP in cell survival has been suspected from the study of knock-out mouse embryos. In search for selective killing of tumour cells, we asked whether Ras-GAP inhibition by other means would lead to apoptosis in established cell lines. We injected a monoclonal antibody directed against the SH3 domain of Ras-GAP (mAb200) that has been shown to block Ras-GAP downstream signalling into various human normal and tumour cell lines. We show that inhibition of Ras-GAP induces apoptosis specifically in tumour, but not in normal cells, therefore pointing at a specific role for Ras-GAP in tumour cell survival. MAb200-induced apoptosis is largely prevented by coinjection of activated RhoA or Cdc42 proteins, by injection of a constitutively activated mutant of phosphoinositide 3-OH kinase (PI3-K), but not by injection of v-Raf. These results show that targeting of Ras-GAP could represent a novel anticancer approach.
Insights
Inhibiting Ras GTPase activating protein (Ras-GAP) selectively triggers apoptosis in tumor cells, not normal cells. This discovery highlights Ras-GAP as a potential target for novel anticancer therapies.
Area of Science:
- Molecular biology
- Cell signaling
- Cancer research
Background:
- Oncogenes and tumor suppressor genes regulate cell survival and apoptosis.
- Ras GTPase activating protein (Ras-GAP) is crucial in the Ras signaling pathway, influencing cell fate.
- Previous studies suggested a role for Ras-GAP in cell survival.
Purpose of the Study:
- To investigate if inhibiting Ras-GAP induces apoptosis in established cell lines.
- To determine if Ras-GAP inhibition can selectively kill tumor cells.
Main Methods:
- Injection of a monoclonal antibody (mAb200) targeting the Ras-GAP SH3 domain into human normal and tumor cell lines.
- Assessing apoptosis induction.
- Evaluating the effect of coinjecting activated RhoA, Cdc42, constitutively activated phosphoinositide 3-OH kinase (PI3-K), or v-Raf.
Main Results:
- Inhibition of Ras-GAP using mAb200 induced apoptosis specifically in tumor cells, while normal cells remained unaffected.
- Ras-GAP inhibition's pro-apoptotic effect was significantly reduced by activated RhoA, Cdc42, or PI3-K.
- v-Raf did not prevent mAb200-induced apoptosis.
Conclusions:
- Ras-GAP plays a critical role in tumor cell survival.
- Targeting Ras-GAP represents a promising novel strategy for anticancer treatment.
- The mechanism involves pathways regulated by RhoA, Cdc42, and PI3-K.