Activation of Rho-Dependent Cell Spreading and Focal Adhesion Biogenesis by the v-Crk Adaptor Protein

Author:

Altun-Gultekin Zeynep F.1,Chandriani Sanjay2,Bougeret Cecile2,Ishizaki Toshimasa3,Narumiya Shuh3,de Graaf Petra4,Van Bergen en Henegouwen Paul4,Hanafusa Hidesaburo2,Wagner John A.1,Birge Raymond B.2

Affiliation:

1. Department of Neurology and Neuroscience, Cornell University Medical College, 1 and

2. Laboratory of Molecular Oncology, The Rockefeller University, 2 New York, New York;

3. Second Department of Pharmacology, Faculty of Medicine, Kyoto University, Kyoto, Japan 3 ; and

4. Department of Molecular Cell Biology, Utrecht University, Utrecht, The Netherlands4

Abstract

ABSTRACT The small GTPase RhoA plays a critical role in signaling pathways activated by serum-derived factors, such as lysophosphatidic acid (LPA), including the formation of stress fibers in fibroblasts and neurite retraction and rounding of soma in neuronal cells. Previously, we have shown that ectopic expression of v-Crk, an SH2/SH3 domain-containing adapter proteins, in PC12 cells potentiates nerve growth factor (NGF)-induced neurite outgrowth and promotes the survival of cells when NGF is withdrawn. In the present study we show that, when cultured in 15% serum or lysophosphatidic acid-containing medium, the majority of v-Crk-expressing PC12 cells (v-CrkPC12 cells) display a flattened phenotype with broad lamellipodia and are refractory to NGF-induced neurite outgrowth unless serum is withdrawn. v-Crk-mediated cell flattening is inhibited by treatment of cells with C3 toxin or by mutation in the Crk SH2 or SH3 domain. Transient cotransfection of 293T cells with expression plasmids for p160 ROCK (Rho-associated coiled-coil-containing kinase) and v-Crk, but not SH2 or SH3 mutants of v-Crk, results in hyperactivation of p160 ROCK . Moreover, the level of phosphatidylinositol-4,5-bisphosphate is increased in v-CrkPC12 cells compared to the levels in mutant v-Crk-expressing cells or wild-type cells, consistent with PI(4)P5 kinase being a downstream target for Rho. Expression of v-Crk in PC12 cells does not result in activation of Rac- or Cdc42-dependent kinases PAK and S6 kinase, demonstrating specificity for Rho. In contrast to native PC12 cells, in which focal adhesions and actin stress fibers are not observed, immunohistochemical analysis of v-CrkPC12 cells reveals focal adhesion complexes which are formed at the periphery of the cell and are connected to actin cables. The formation of focal adhesions correlates with a concomitant upregulation in the expression of focal adhesion proteins FAK, paxillin, α 3 -integrin, and a higher-molecular-weight form of β 1 -integrin. Our results indicate that v-Crk activates the Rho-signaling pathway and serves as a scaffolding protein during the assembly of focal adhesions in PC12 cells.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

Reference79 articles.

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3. Formation of actin stress fibers and focal adhesions enhanced by rho-kinase;Arraro M.;Science,1996

4. Requirement for rho in integrin signaling;Barry S. T.;Cell Adhes. Commun.,1997

5. Focal contacts of normal and RSV-transformed quail cells. Hypothesis of the transformation-induced deficient maturation of focal contacts;Bershadsky A. D.;Exp. Cell Res.,1985

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