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Updated: Aug 8, 2026

Protocol for Culturing Sympathetic Neurons from Rat Superior Cervical Ganglia (SCG)
Published on: January 30, 2009
Ras regulates sympathetic neuron survival by suppressing the p53-mediated cell death pathway
I E Mazzoni1, F A Saïd, R Aloyz
1Center for Neuronal Survival, Montreal Neurological Institute, McGill University, Montreal, Quebec, Canada H3A 2B4.
Abstract:
In this report, we examine how the Ras protein regulates neuronal survival, focusing on sympathetic neurons. Adenovirus-expressed constitutively activated Ras (RasV12) enhanced survival and the phosphorylation of Akt (protein kinase B) and MAP kinase (MAPK), two targets of Ras activity. Functional inhibition of endogenous Ras by adenovirus-expressed dominant-inhibitory Ras (N17Ras) decreased nerve growth factor (NGF)-dependent survival and both Akt and MAPK phosphorylation as well. To determine the signaling pathways through which Ras mediates survival, we used Ras effector mutants and pharmacological inhibitors that selectively suppress phosphatidylinositol 3-kinase (PI3-K)/Akt or MAP kinase kinase (MEK)/MAPK pathways. The Ras effector mutant Ras(V12)Y40C, which selectively stimulates PI3-K and Akt, rescued survival in the absence of NGF, and the PI3-K inhibitor LY 294002 inhibited both Ras- and NGF-dependent survival. Ras(V12)T(35)S, which activates MEK/MAPK but not PI3-K/Akt, was less effective at rescuing survival, whereas the MEK inhibitor PD 098059 also partially suppressed Ras-dependent survival. To investigate the mechanisms by which Ras suppresses neuronal death, we examined whether Ras functions by inhibiting the proapoptotic p53 pathway (Jun-N-terminal kinase/p53/BAX) that is necessary for neuronal death after NGF withdrawal and p75NTR activation. We found that RasV12 suppressed c-jun, BAX, and p53 levels, whereas inhibition of NGF-induced Ras-survival activity via N17Ras increased the levels of these proteins. Furthermore, the E1B55K protein, which suppresses p53 activity, blocked N17Ras-induced neuronal death. Together, these results indicate that Ras is, in part, both necessary and sufficient for survival of sympathetic neurons and that this effect is mediated by activation of both the PI3-K- and MEK-signaling cascades, which in turn suppress a proapoptotic p53 pathway.
Insights
Ras protein is crucial for sympathetic neuron survival, activating PI3-K/Akt and MEK/MAPK pathways to inhibit the proapoptotic p53 pathway. This Ras signaling is necessary and sufficient for neuronal survival.
Area of Science:
- Neuroscience
- Cell Biology
- Molecular Biology
Background:
- The Ras protein plays a critical role in cellular signaling pathways.
- Neuronal survival is a complex process regulated by various intracellular signaling cascades.
- Sympathetic neurons are a key model system for studying neuronal development and survival.
Purpose of the Study:
- To investigate the role of the Ras protein in regulating sympathetic neuronal survival.
- To identify the specific signaling pathways downstream of Ras that mediate neuronal survival.
- To elucidate the molecular mechanisms by which Ras promotes survival and inhibits apoptosis.
Main Methods:
- Adenovirus-mediated expression of constitutively active Ras (RasV12) and dominant-inhibitory Ras (N17Ras).
- Pharmacological inhibition of phosphatidylinositol 3-kinase (PI3-K)/Akt and MAP kinase kinase (MEK)/MAPK pathways.
- Analysis of protein phosphorylation (Akt, MAPK) and expression levels (c-jun, BAX, p53).
- Assessment of neuronal survival in response to NGF withdrawal and manipulation of Ras signaling.
Main Results:
- RasV12 expression enhanced sympathetic neuron survival and promoted Akt and MAPK phosphorylation.
- Inhibition of endogenous Ras (N17Ras) reduced NGF-dependent survival and downstream signaling.
- Selective activation of PI3-K/Akt by Ras(V12)Y40C rescued survival, while Ras(V12)T35S activating MEK/MAPK was less effective.
- Ras signaling suppressed the proapoptotic p53 pathway, evidenced by reduced c-jun, BAX, and p53 levels.
- The p53-inhibiting protein E1B55K blocked N17Ras-induced neuronal death.
Conclusions:
- Ras is both necessary and sufficient for sympathetic neuron survival.
- Ras-mediated survival is dependent on the activation of both PI3-K/Akt and MEK/MAPK signaling cascades.
- Ras suppresses neuronal apoptosis, at least in part, by inhibiting the proapoptotic p53 pathway.
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