R-Ras promotes apoptosis caused by growth factor deprivation via a Bcl-2 suppressible mechanism.
Open Access
- 15 May 1995
- journal article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 129 (4) , 1103-1114
- https://doi.org/10.1083/jcb.129.4.1103
Abstract
The Bcl-2 protein is an important regulator of programmed cell death, but the biochemical mechanism by which this protein prevents apoptosis remains enigmatic. Recently, Bcl-2 has been reported to physically interact with a member of the Ras superfamily of small GTPases, p23-R-Ras. To examine the functional significance of R-Ras for regulation of cell death pathways, the IL-3-dependent cells 32D.3 and FL5.12 were stably transfected with expression plasmids encoding an activated form (38 Glycine-->Valine) of R-Ras protein. R-Ras(38V)-producing 32D.3 and FL5.12 cells experienced increased rates of apoptotic cell death relative to control transfected cells when deprived of IL-3. Analysis of several independent clones of transfected 32D.3 cells revealed a correlation between higher levels of R-Ras protein and faster rates of cell death upon withdrawal of IL-3 from cultures. 32D.3 cells cotransfected with R-Ras(38V) and Bcl-2 exhibited prolonged cell survival in the absence of IL-3, equivalent to 32D.3 cells transfected with Bcl-2 expression plasmids alone. R-Ras(38V) also increased rates of cell death in serum-deprived NIH-3T3 cells, and Bcl-2 again abrogated most of this effect. The ratio of GTP and GDP bound to R-Ras(38V) was not significantly different in control 32D.3 cells vs those that overexpressed Bcl-2, indicating that Bcl-2 does not abrogate R-Ras-mediated effects on cell death by altering R-Ras GDP/GTP regulation. Moreover, purified Bcl-2 protein had no effect on the GTPase activity of recombinant wild-type R-Ras in vitro. When expressed in Sf9 cells using recombinant baculoviruses, R-Ras(38V) bound to and induced activation of Raf-1 kinase irrespective of whether Bcl-2 was coproduced in these cells, suggesting that Bcl-2 does not nullify R-Ras effects by interfering with R-Ras-mediated activation of Raf-1 kinase. Taken together, these findings suggest that R-Ras enhances the activity of a cell death pathway in growth factor-deprived cells and imply that Bcl-2 acts downstream of R-Ras to promote cell survival.Keywords
This publication has 55 references indexed in Scilit:
- Oncogenic activation of human R-ras by point mutations analogous to those of prototype H-ras oncogenes.1994
- Deregulated Bcl-2 gene expression selectively prolongs survival of growth factor-deprived hemopoietic cell lines.The Journal of Immunology, 1990
- bcl-2-Immunoglobulin transgenic mice demonstrate extended B cell survival and follicular lymphoproliferationCell, 1989
- Identification of distinct cytoplasmic targets for ras/R-ras and rho regulatory proteinsJournal of Biological Chemistry, 1989
- Bcl-2 gene promotes haemopoietic cell survival and cooperates with c-myc to immortalize pre-B cellsNature, 1988
- Chimeric proteins define variable and essential regions of Ha-ras-encoded protein.Proceedings of the National Academy of Sciences, 1988
- Heterologous expression and characterization of the human R-ras gene product.Molecular and Cellular Biology, 1987
- Structure of the human and murine R-ras genes, novel genes closely related to ras proto-oncogenesCell, 1986
- Analysis of the structure, transcripts, and protein products of bcl-2, the gene involved in human follicular lymphoma.Proceedings of the National Academy of Sciences, 1986
- Involvement of the bcl -2 Gene in Human Follicular LymphomaScience, 1985