REGULATED AND CONSTITUTIVE ACTIVITY BY CDC25(MM) (GRF), A RAS-SPECIFIC EXCHANGE FACTOR

被引:50
作者
CEN, H [1 ]
PAPAGEORGE, AG [1 ]
VASS, WC [1 ]
ZHANG, K [1 ]
LOWY, DR [1 ]
机构
[1] NCI,CELLULAR ONCOL LAB,BETHESDA,MD 20892
关键词
D O I
10.1128/MCB.13.12.7718
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Serum stimulates cells to increase their proportion of Ras protein in the active GTP-bound state. We have recently identified four types (I to IV of apparently full-length cDNAs from a single mammalian gene, called CDC25Mm or GRF, which is homologous to the Ras-specific exchange factor CDC25 of S. cerevisiae. The largest cDNA (type IV) is brain specific, with the other three classes, although they have distinct 5' ends, essentially representing progressive N-terminal deletions of this cDNA. When placed in a retroviral expression vector, all four types of cDNAs induced morphologic transformation of NIH 3T3 cells and an increase in the basal level of GTP . Ras. Serum stimulation of these transformants lead to a further increase in GTP . Ras only in cells expressing the type IV cDNA. Each type of GRF protein was found in cytosolic and membrane fractions, and the protein in each fraction could stimulate guanine nucleotide release from GDP . Ras in vitro. When NIH 3T3 cells and cells expressing the type IV protein were transfected with two versions of a mutant ras gene, one encoding membrane-associated Ras protein and the other encoding a cytosolic Ras protein, the basal levels of GTP bound to both forms of the mutant Ras protein were significantly higher in the cells expressing the type IV protein. However, serum increased the level of GTP bound to the membrane-associated mutant Ras protein in NIH 3T3 cells and in cells expressing the type IV protein but not in cells expressing the cytosolic version of the Ras protein. We conclude that each type of CDC25Mm induces cell transformation via the ability of its C terminus to stimulate guanine nucleotide exchange on Ras, the presence of N-terminal sequences is associated with a serum-dependent change in GTP . Ras, and the serum-dependent increase in GTP . Ras by exogenous CDC25Mm or by endogenous exchange factors probably requires membrane association of both Ras and the exchange factor.
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页码:7718 / 7724
页数:7
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共 40 条
  • [1] Barbacid M., ras genes, Annu. Rev. Biochem., 56, pp. 779-827, (1987)
  • [2] Barlat I., Schweighoffer F., Chevalliermulton M.C., Duchesne M., Fath I., Landais D., Jacquet M., Tocque B., The Saccharomyces cerevisiae gene product SDC25 C-domain functions as an oncoprotein in NIH3T3 cells, Oncogene, 8, pp. 215-218, (1993)
  • [3] Bowtell D., Fu P., Simon M., Senior P., Identification of murine homologues of the Drosophila Son of sevenless gene - Potential activators of ras, Proc. Natl. Acad. Sci. USA, 89, pp. 6511-6515, (1992)
  • [4] Broek D., Toda T., Michaeli T., Levin L., Birchmeier C., Zoller M., Powers S., Wigler M., The S. cerevisiae CDC25 gene product regulates the RAS/adenylate cyclase pathway, Cell, 48, pp. 789-799, (1987)
  • [5] Buday L., Downward J., Epidermal growth factor regulates the exchange rate of guanine nucleotides on p21<sup>ras</sup> in fibroblasts, Mol. Cell. Biol., 13, pp. 1903-1910, (1993)
  • [6] Cen H., Papageorge A.G., Zippel R., Lowy D.R., Zhang K., Isolation of multiple mouse cDNAs with coding homology to Saccharomyces cerevisiae CDC25 - Identification of a region related to bcr, vav, dbl and CDC24, EMBO J., 11, pp. 4007-4015, (1992)
  • [7] Cross F.R., Garber E.A., Pellman D., Hanafusa H., A short sequence in the p60<sup>src</sup> N terminus is required for p60<sup>src</sup> myristylation and membrane association and for cell transformation, Mol. Cell. Biol., 4, pp. 1834-1842, (1984)
  • [8] DeClue J.E., Vass W.C., Johnson M.R., Stacey D.W., Lowy D.R., Functional role of the GTPase-activating protein in cell transformation by pp60<sup>v-src</sup>, Mol. Cell. Biol., 13, pp. 6799-6809, (1993)
  • [9] Downward J., Regulatory mechanisms for ras proteins, Bioessays, 14, pp. 177-184, (1992)
  • [10] Egan S.E., Giddings B.W., Brooks M.W., Buday L., Sizeland A.M., Weinberg R.A., Association of sos ras exchange protein with grb2 is implicated in tyrosine kinase signal transduction and transformation, Nature, 363, pp. 45-51, (1993)