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Updated: Aug 13, 2026

Spatio-Temporal Manipulation of Small GTPase Activity at Subcellular Level and on Timescale of Seconds in Living Cells
Published on: March 9, 2012
The small GTPases Cdc42Hs, Rac1 and RhoG delineate Raf-independent pathways that cooperate to transform NIH3T3 cells
P Roux1, C Gauthier-Rouvière, S Doucet-Brutin
1Institut de Génétique Moléculaire, C.N.R.S. UMR5535, 1919 route de Mende, F-34293 Montpellier cedex 5, France. roux@igm.cnrs-mop.fr
Background:
Ras-mediated transformation of mammalian cells has been shown to activate multiple signalling pathways, including those involving mitogen-activated protein kinases and the small GTPase Rho. Members of the Rho family affect cell morphology by controlling the formation of actin-dependent structures: specifically, filopodia are induced by Cdc42Hs, lamellipodia and ruffles by Rac, and stress fibers by RhoA. In addition, Rho GTPases are involved in progression through the G1 phase of the cell cycle, and Rac1 and RhoA have recently been directly implicated in the morphogenic and mitogenic responses to transformation by oncogenic Ras. In order to examine the cross-talk between Ras and Rho proteins, we investigated the effects on focus-forming activity and cell growth of the Rho-family members Cdc42Hs, Rac1 and RhoG by expressing constitutively active or dominant-negative forms in NIH3T3 cells.
Results:
Expression of Rac1 or RhoG modulated the saturation density to which the cells grew, probably by affecting the level of contact inhibition. Although all three GTPases were required for cell transformation mediated by Ras but not by constitutively active Raf, the selective activation of each GTPase was not sufficient to induce the formation of foci. The coordinated activation of Cdc42Hs, RhoG and Rac1, however, elicited a high focus-forming activity, independent of the mitogen-activated ERK and JNK protein kinase pathways.
Conclusions:
Ras-mediated transformation induces extensive changes in cell morphology which require the activity of members of the Rho family of GTPases. Our data show that the pattern of coordinated Rho family activation that elicits a focus-forming activity in NIH3T3 cells is distinct from the regulatory cascade that has been proposed for the control of actin-dependent structures in Swiss 3T3 cells.
Insights
Ras transformation activates Rho GTPases, crucial for cell morphology and growth. Coordinated activation of Cdc42Hs, RhoG, and Rac1 drives focus formation, independent of ERK/JNK pathways.
Area of Science:
- Cell Biology
- Molecular Oncology
- Signal Transduction
Background:
- Oncogenic Ras signaling activates multiple pathways, including Rho GTPases, influencing cell morphology and cell cycle progression.
- Rho family members (Cdc42Hs, Rac, RhoA) control actin dynamics, affecting filopodia, lamellipodia, and stress fiber formation.
- Rac1 and RhoA are implicated in Ras-mediated morphogenic and mitogenic responses.
Purpose of the Study:
- To investigate the cross-talk between Ras and Rho proteins.
- To examine the effects of Rho family members (Cdc42Hs, Rac1, RhoG) on focus-forming activity and cell growth.
- To determine the role of specific Rho GTPases in Ras-induced cellular transformation.
Main Methods:
- Expression of constitutively active or dominant-negative forms of Cdc42Hs, Rac1, and RhoG in NIH3T3 cells.
- Analysis of focus-forming activity and cell saturation density.
- Assessment of involvement in Ras-mediated transformation, distinguishing from Raf signaling.
Main Results:
- Rac1 and RhoG expression modulated cell saturation density, impacting contact inhibition.
- All three GTPases (Cdc42Hs, Rac1, RhoG) were necessary for Ras-mediated transformation, but not for transformation by constitutively active Raf.
- Selective activation of individual GTPases did not induce foci; however, coordinated activation of Cdc42Hs, RhoG, and Rac1 resulted in high focus-forming activity, independent of ERK and JNK pathways.
Conclusions:
- Ras-mediated transformation necessitates Rho family GTPase activity for extensive morphological changes.
- The specific pattern of coordinated Rho family activation required for focus formation in NIH3T3 cells differs from previously proposed regulatory cascades for actin structures.
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