A critical role for cortactin phosphorylation by Abl-family kinases in PDGF-induced dorsal-wave formation

  • Curr Biol. 2007 Mar 6;17(5):445-51. doi: 10.1016/j.cub.2007.01.057.
Scott N Boyle  1 ,  Gregory A Michaud ,  Barry Schweitzer ,  Paul F Predki ,  Anthony J Koleske
Affiliations
  • 1. Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, CT 06520, USA.
Abstract

Proper regulation of cell morphogenesis and migration by adhesion and growth-factor receptors requires Abl-family tyrosine Kinases [1-3]. Several substrates of Abl-family kinase have been identified, but they are unlikely to mediate all of the downstream actions of these Kinases on cytoskeletal structure. We used a human protein microarray to identify the actin-regulatory protein cortactin as a novel substrate of the Abl and Abl-related gene (Arg) nonreceptor tyrosine Kinases. Cortactin stimulates cell motility [4-6], and its upregulation in several cancers correlates with poor prognosis [7]. Even though cortactin can be tyrosine phosphorylated by Src-family Kinases in vitro [8], we show that Abl and Arg are more adept at binding and phosphorylating cortactin. Importantly, we demonstrate that platelet-derived growth-factor (PDGF)-induced cortactin phosphorylation on three tyrosine residues requires Abl or Arg. Cortactin triggers F-actin-dependent dorsal waves in fibroblasts after PDGF treatment and thus results in Actin reorganization and lamellipodial protrusion [9]. We provide evidence that Abl/Arg-mediated phosphorylation of cortactin is required for this PDGF-induced dorsal-wave response. Our results reveal that Abl-family Kinases target cortactin as an effector of cytoskeletal rearrangements in response to PDGF.