A single tyrosine phosphorylation site in cortactin is important for filopodia formation in neuronal growth cones

Author:

Ren Yuan1,He Yingpei1,Brown Sherlene2,Zbornik Erica1,Mlodzianoski Michael J.3,Ma Donghan3,Huang Fang345,Mattoo Seema14,Suter Daniel M.1567

Affiliation:

1. Department of Biological Sciences, Purdue University, West Lafayette, IN 47907

2. Department of Biochemistry, Purdue University, West Lafayette, IN 47907

3. Department of Weldon School of Biomedical Engineering, Purdue Institutes of Inflammation, Immunology and Infectious Disease, Purdue University, West Lafayette, IN 47907

4. Department of Inflammation, Immunology and Infectious Disease, Purdue University, West Lafayette, IN 47907

5. Department of Integrative Neuroscience, Purdue University, West Lafayette, IN 47907

6. Department of Bindley Bioscience Center, Purdue University, West Lafayette, IN 47907

7. Department of Birck Nanotechnology Center, Purdue University, West Lafayette, IN 47907

Abstract

Cortactin is a Src tyrosine phosphorylation substrate that regulates multiple actin-related cellular processes. While frequently studied in nonneuronal cells, the functions of cortactin in neuronal growth cones are not well understood. We recently reported that cortactin mediates the effects of Src tyrosine kinase in regulating actin organization and dynamics in both lamellipodia and filopodia of Aplysia growth cones. Here, we identified a single cortactin tyrosine phosphorylation site (Y499) to be important for the formation of filopodia. Overexpression of a 499F phospho-deficient cortactin mutant decreased filopodia length and density, whereas overexpression of a 499E phospho-mimetic mutant increased filopodia length. Using an antibody against cortactin pY499, we showed that tyrosine-phosphorylated cortactin is enriched along the leading edge. The leading edge localization of phosphorylated cortactin is Src2-dependent, F-actin–independent, and important for filopodia formation. In vitro kinase assays revealed that Src2 phosphorylates cortactin at Y499, although Y505 is the preferred site in vitro. Finally, we provide evidence that Arp2/3 complex acts downstream of phosphorylated cortactin to regulate density but not length of filopodia. In conclusion, we have characterized a tyrosine phosphorylation site in Aplysia cortactin that plays a major role in the Src/cortactin/Arp2/3 signaling pathway controlling filopodia formation.

Publisher

American Society for Cell Biology (ASCB)

Subject

Cell Biology,Molecular Biology

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