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Phosphorylation-dependent and constitutive activation of Rho proteins by wild-type and oncogenic Vav-2
K E Schuebel1, N Movilla, J L Rosa
1Department of Pathology, State University of New York at Stony Brook, University Hospital, Level 2, Room 718-B, Stony Brook, NY 11794-7025, USA.
Abstract:
We show here that Vav-2, a member of the Vav family of oncoproteins, acts as a guanosine nucleotide exchange factor (GEF) for RhoG and RhoA-like GTPases in a phosphotyrosine-dependent manner. Moreover, we show that Vav-2 oncogenic activation correlates with the acquisition of phosphorylation-independent exchange activity. In vivo, wild-type Vav-2 is activated oncogenically by tyrosine kinases, an effect enhanced further by co-expression of RhoA. Likewise, the Vav-2 oncoprotein synergizes with RhoA and RhoB proteins in cellular transformation. Transient transfection assays in NIH-3T3 cells show that phosphorylated wild-type Vav-2 and the Vav-2 oncoprotein induce cytoskeletal changes resembling those observed by the activation of the RhoG pathway. In contrast, the constitutive expression of the Vav-2 oncoprotein in rodent fibroblasts leads to major alterations in cell morphology and to highly enlarged cells in which karyokinesis and cytokinesis frequently are uncoupled. These results identify a regulated GEF for the RhoA subfamily, provide a biochemical explanation for vav family oncogenicity, and establish a new signaling model in which specific Vav-like proteins couple tyrosine kinase signals with the activation of distinct subsets of the Rho/Rac family of GTPases.
Insights
Vav-2 acts as a guanosine nucleotide exchange factor (GEF) for Rho GTPases, becoming oncogenic through phosphorylation-dependent and independent pathways. This protein links tyrosine kinase signals to Rho GTPase activation, impacting cell morphology and division.
Area of Science:
- Cell Biology
- Molecular Oncology
- Signal Transduction
Background:
- Vav-2 is a member of the Vav family of oncoproteins.
- Rho GTPases are key regulators of the actin cytoskeleton and cell polarity.
Purpose of the Study:
- To elucidate the GEF activity of Vav-2 for Rho GTPases.
- To investigate the mechanisms of Vav-2 oncogenic activation.
- To establish a signaling model for Vav-2 in cellular transformation.
Main Methods:
- In vitro guanine nucleotide exchange assays.
- Transient transfection assays in NIH-3T3 cells.
- Analysis of cellular morphology and cell division in rodent fibroblasts.
Main Results:
- Vav-2 functions as a phosphotyrosine-dependent GEF for RhoG and RhoA-like GTPases.
- Oncogenic activation of Vav-2 involves phosphorylation-independent exchange activity.
- Vav-2 cooperates with RhoA and RhoB in cellular transformation, inducing cytoskeletal changes and uncoupled cell division.
Conclusions:
- Vav-2 is a regulated GEF for the RhoA subfamily of GTPases.
- A biochemical basis for Vav family oncogenicity is provided.
- Vav-like proteins link tyrosine kinase signaling to Rho/Rac GTPase activation.