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Aberrant function of the Ras-related protein TC21/R-Ras2 triggers malignant transformation
S M Graham1, A D Cox, G Drivas
1University of North Carolina at Chapel Hill 27599.
Abstract:
Although the human Ras proteins are members of a large superfamily of Ras-related proteins, to date, only the proteins encoded by the three mammalian ras genes have been found to possess oncogenic potential. Among the known Ras-related proteins, TC21/R-Ras2 exhibits the most significant amino acid identity (55%) to Ras proteins. We have generated mutant forms of TC21 that possess amino acid substitutions analogous to those that activate Ras oncogenic potential [designated TC21(22V) and TC21(71L)] and compared the biological properties of TC21 with those of Ras proteins in NIH 3T3 and Rat-1 transformation assays. Whereas wild-type TC21 did not show any transforming potential in vitro, both TC21(22V) and TC21(71L) displayed surprisingly potent transforming activities that were comparable to the strong transforming activity of oncogenic Ras proteins. Like Ras-transformed cells, NIH 3T3 cells expressing mutant TC21 proteins formed foci of morphologically transformed cells in monolayer cultures, proliferated in low serum, formed colonies in soft agar, and developed progressive tumors in nude mice. Thus, TC21 is the first Ras-related protein to exhibit potent transforming activity equivalent to that of Ras. Furthermore, mutant TC21 proteins also stimulated constitutive activation of mitogen-activated protein kinases as well as transcriptional activation from Ras-responsive promoter elements (Ets/AP-1 and NF-kappa B). We conclude that aberrant TC21 function may trigger cellular transformation via a signal transduction pathway similar to that of oncogenic Ras and suggest that deregulated TC21 activity may contribute significantly to human oncogenesis.
Insights
Mutant forms of TC21, a Ras-related protein, show potent transforming activity similar to oncogenic Ras proteins. Aberrant TC21 function may contribute to human cancer through similar signaling pathways.
Area of Science:
- Molecular biology
- Cell biology
- Oncology
Background:
- Ras proteins are key regulators of cell signaling, and their aberrant activation is linked to cancer.
- TC21/R-Ras2 is a Ras-related protein with high sequence identity to Ras, but its oncogenic potential was previously unknown.
Purpose of the Study:
- To investigate the transforming potential of TC21 by creating and testing mutant forms analogous to oncogenic Ras.
- To compare the biological activity of mutant TC21 with that of Ras proteins in cellular transformation assays.
Main Methods:
- Generation of mutant TC21 proteins (TC21(22V) and TC21(71L)) with specific amino acid substitutions.
- NIH 3T3 and Rat-1 cell transformation assays to assess in vitro transforming activity.
- Tumorigenicity assays in nude mice.
- Analysis of mitogen-activated protein kinase (MAPK) pathway activation and transcriptional reporter assays.
Main Results:
- Wild-type TC21 showed no in vitro transforming activity.
- Mutant TC21(22V) and TC21(71L) exhibited potent transforming activities comparable to oncogenic Ras proteins.
- Cells expressing mutant TC21 displayed characteristics of Ras-transformed cells, including anchorage-independent growth, proliferation in low serum, and tumor formation in vivo.
- Mutant TC21 proteins activated MAPK signaling and Ras-responsive promoters.
Conclusions:
- TC21 is the first Ras-related protein demonstrated to possess potent transforming activity equivalent to Ras.
- Aberrant TC21 function can trigger cellular transformation via a signaling pathway similar to oncogenic Ras.
- Deregulated TC21 activity may significantly contribute to human oncogenesis.