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Published on: July 17, 2019
R-Ras3, a brain-specific Ras-related protein, activates Akt and promotes cell survival in PC12 cells
A C Kimmelman1, M Osada, A M Chan
1The Derald H Ruttenberg Cancer Center, The Mount Sinai School of Medicine, New York, NY 10029, USA.
Abstract:
The GTP-binding protein, R-Ras3/M-Ras, is a novel member of the Ras subfamily of GTPases which shows highest sequence similarity to the TC21 gene. R-Ras3 is highly expressed in both human and mouse brain and ectopic expression of a constitutively active mutant of R-Ras3 induces cellular transformation in NIH3T3 cells. To gain further insight into the normal cellular function of R-Ras3, we examined the ability of R-Ras3 in activating several known intracellular signaling cascades. We observed that R-Ras3 is a relatively weak activator of the mitogen-activated protein kinase/extracellular-signal-regulated kinases (MAPK/ERKs) when compared to the H-Ras oncogene. On the contrary, both R-Ras3 and H-Ras activated the Jun N-terminal kinase (JNK) to a similar extent. Under similar experimental conditions, R-Ras3 significantly stimulated one of the phosphatidylinositol 3-kinase (PI3-K) downstream substrates, Akt/PKB/RAC (Akt), which has been extensively implicated in mediating cell survival signaling. The activation of Akt by R-Ras3 was most likely to be PI3-K-dependent since this biochemical event was blocked by the pharmacological inhibitors, Wortmannin and LY294002, as well as by a dominant negative mutant of PI3-K. More importantly, R-Ras3 affinity-precipitated PI3-K from cell extracts in a GTP-dependent manner, and associated lipid kinase activity was readily detectable in R-Ras3 immune complexes. The biological significance of R-Ras3 in inducing Akt kinase activity is evidenced by the ability of an activated R-Ras3 to confer cell survival in the rat pheochromocytoma cell line, PC12. As expected, this biological activity of R-Ras3 was also abrogated by the addition of LY294002. Thus, R-Ras3 represents a novel G-protein which may play a role in cell survival of neural-derived cells.
Insights
R-Ras3/M-Ras, a novel GTP-binding protein, activates Akt signaling, promoting cell survival in neural cells. It binds and activates phosphatidylinositol 3-kinase (PI3-K), highlighting its role in cell survival pathways.
Area of Science:
- Molecular Biology
- Cell Signaling
- Oncology
Background:
- R-Ras3/M-Ras is a novel GTP-binding protein in the Ras subfamily.
- It is highly expressed in the brain and can induce cellular transformation.
- Its normal cellular function requires further investigation.
Purpose of the Study:
- To investigate the role of R-Ras3/M-Ras in activating intracellular signaling cascades.
- To understand the downstream effects of R-Ras3/M-Ras activation.
- To elucidate the function of R-Ras3/M-Ras in cell survival.
Main Methods:
- Examined R-Ras3/M-Ras activation of MAPK/ERKs, JNK, and Akt pathways.
- Utilized pharmacological inhibitors (Wortmannin, LY294002) and dominant-negative PI3-K.
- Performed GTP-dependent affinity precipitation of PI3-K by R-Ras3/M-Ras.
Main Results:
- R-Ras3/M-Ras weakly activates MAPK/ERKs but strongly activates JNK and Akt.
- Akt activation by R-Ras3/M-Ras is PI3-K dependent.
- R-Ras3/M-Ras directly binds and activates PI3-K, promoting cell survival in PC12 cells.
Conclusions:
- R-Ras3/M-Ras is a novel G-protein that activates the PI3-K/Akt pathway.
- This activation confers cell survival, particularly in neural-derived cells.
- R-Ras3/M-Ras may play a significant role in neural cell survival signaling.
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