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Tumorigenic activity of rho genes from Aplysia californica
Abstract:
rho genes have been found in both lower and higher eucaryotes. They code for proteins of 21 kDa, highly conserved in evolution, which belong to the superfamily of ras GTPases. Among the members of this superfamily there are proteins with a regulatory function, such as ras, and proteins involved in vesicular trafficking, such as the family of rab proteins. We have investigated the putative role of rho proteins from Aplysia californica as transforming GTPases utilizing the wild-type and a Val-14 mutant, equivalent to the oncogenic Val-12 mutation of ras genes found in animal and human tumors. Over-expression of either rho gene was sufficient to confer anchorage- and serum-independent growth. Moreover, when introduced into nude mice, selected clones generated from either gene were able to induce tumors, although those carrying the mutated version were more efficient. Pathological analysis indicated that generated tumors corresponded to well-differentiated fibrosarcomas with distinct and intersecting bundles and spindle cells. By contrast, ras-induced tumors were poorly differentiated fibrosarcomas. Thus, our results indicate that under appropriate conditions rho genes function as oncogenes and may have a role in the regulation of proliferation in fibroblast cells.
Insights
Rho genes, similar to ras GTPases, can act as oncogenes. Overexpression of Aplysia californica rho genes induced tumors in mice, suggesting a role in fibroblast proliferation.
Area of Science:
- Molecular Biology
- Cell Biology
- Genetics
Background:
- Rho proteins are conserved 21 kDa GTPases in eukaryotes, belonging to the ras GTPase superfamily.
- This superfamily includes regulatory proteins like ras and vesicular trafficking proteins like rab.
Purpose of the Study:
- To investigate the potential oncogenic role of Aplysia californica rho proteins.
- To compare the transforming activity of wild-type and Val-14 mutant rho genes.
Main Methods:
- Overexpression of wild-type and Val-14 mutant rho genes in Aplysia californica.
- Assessing anchorage- and serum-independent growth of transfected cells.
- Tumor induction in nude mice using selected clones.
- Pathological analysis of induced tumors.
Main Results:
- Overexpression of both rho genes conferred anchorage- and serum-independent growth.
- Tumors were induced in nude mice, with the mutated rho version being more efficient.
- Rho-induced tumors were well-differentiated fibrosarcomas, distinct from poorly differentiated ras-induced tumors.
Conclusions:
- Rho genes can function as oncogenes under specific conditions.
- Rho proteins may play a role in regulating fibroblast proliferation.