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Regulation of p190 Rho-GAP by v-Src is linked to cytoskeletal disruption during transformation
V J Fincham1, A Chudleigh, M C Frame
1The Beatson Institute for Cancer Research, CRC Beatson Laboratories, Garscube Estate, Switchback Road, Bearsden, Glasgow G61 1BD, UK.
Abstract:
The v-Src oncoprotein perturbs the dynamic regulation of the cellular cytoskeletal and adhesion network by a mechanism that is poorly understood. Here, we have examined in detail the effects of a temperature-dependent v-Src protein on the regulation of p190 RhoGAP, a GTPase activating protein (GAP) that has been implicated in disruption of the organised actin cytoskeleton, and addressed the dependence of v-Src-induced stress fibre loss on inhibition of Rho activity. We found that activation of v-Src induced association of tyrosine phosphorylated p190 with p120(RasGAP) and stimulation of p120(RasGAP)-associated RhoGAP activity, although p120(RasGAP) itself was not a target for phosphorylation by v-Src in chicken embryo cells. These events required the catalytic activity of v-Src and were linked to loss of actin stress fibres during morphological transformation and not mitogenic signalling. Furthermore, these effects were rapidly reversible since switching off v-Src led to dissociation of the p190/p120(RasGAP) complex, inactivation of p120(RasGAP)-associated RhoGAP activity and re-induction of actin stress fibres. In addition, transient transfection of Val14-RhoA, a constitutively active Rho protein that is insensitive to RhoGAPs, suppressed v-Src-induced stress fibre loss and cell transformation. Thus, we show here for the first time that an activated Src kinase requires the inactivation of Rho-mediated actin stress fibre assembly to induce its effects on actin disorganisation. Moreover, our work supports p190 as a strong candidate effector of v-Src-induced cytoskeletal disruption, most likely mediated by antagonism of the cellular function of Rho.
Insights
Activated v-Src oncogene disrupts actin stress fibers by inhibiting RhoA GTPase activity via p190 RhoGAP. This cytoskeletal re-organization is reversible and crucial for cell transformation.
Area of Science:
- Cell Biology
- Molecular Oncology
- Biochemistry
Background:
- The v-Src oncoprotein disrupts cellular cytoskeletal and adhesion networks through poorly understood mechanisms.
- p190 RhoGAP is a GTPase activating protein implicated in the disruption of the actin cytoskeleton.
Purpose of the Study:
- To investigate the role of p190 RhoGAP in v-Src-induced cytoskeletal changes.
- To determine the dependence of v-Src-induced stress fiber loss on Rho activity inhibition.
Main Methods:
- Utilized a temperature-dependent v-Src protein in chicken embryo cells.
- Examined protein-protein interactions and GTPase activating protein (GAP) activity.
- Employed transient transfection with constitutively active RhoA (Val14-RhoA).
Main Results:
- v-Src activation induced tyrosine phosphorylation and association of p190 with p120(RasGAP), stimulating RhoGAP activity.
- Loss of actin stress fibers and cell transformation were linked to Rho activity inhibition, not mitogenic signaling.
- Effects were rapidly reversible upon v-Src inactivation.
- Constitutively active RhoA suppressed v-Src-induced stress fiber loss and cell transformation.
Conclusions:
- Activated Src kinase requires Rho-mediated actin stress fiber assembly inactivation for cytoskeletal disorganization.
- p190 RhoGAP is a key effector of v-Src-induced cytoskeletal disruption, likely by antagonizing Rho function.