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First published online 7 December 2004
doi: 10.1242/jcs.01586


Journal of Cell Science 118, 79-87 (2005)
Published by The Company of Biologists 2005
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Research Article

Cortactin regulates cell migration through activation of N-WASP

Jennifer R. Kowalski1,2, Coumaran Egile3, Susana Gil2, Scott B. Snapper4, Rong Li3 and Sheila M. Thomas2,*

1 Biological and Biomedical Sciences Program, Harvard Medical School, Boston, MA 02215, USA
2 Cancer Biology Program Beth Israel Deaconess Medical Center and Department of Medicine, Harvard Medical School, Boston, MA 02215, USA
3 Department of Cell Biology, Harvard Medical School, Boston, MA 02215, USA
4 Massachusetts General Hospital and Department of Medicine, Harvard Medical School, Boston, MA 02215, USA

* Author for correspondence (e-mail: sthomas{at}bidmc.harvard.edu)

Accepted 7 October 2004

Cortactin is an actin-associated scaffolding protein that regulates cell migration. Amplification of the human gene, EMS1, has been detected in breast, head and neck tumors, where it correlates with increased invasiveness. Cortactin can regulate actin dynamics directly via its N-terminal half, which can bind and activate the Arp2/3 complex. The C-terminal portion of cortactin, however, is thought to have limited function in its regulation of the actin polymerization machinery. In this report, we identify a role for the cortactin C-terminus in regulating cell migration and, more specifically, actin dynamics. Overexpression of either full-length cortactin or cortactin C-terminus is sufficient to enhance migration of mammary epithelial cells. In vitro, cortactin binds to and activates, via its SH3 domain, a regulator of the Arp2/3 complex, neural Wiskott Aldrich Syndrome protein (N-WASP). This in vitro activation of N-WASP is likely to be important in vivo, as cortactin-enhanced migration is dependent upon N-WASP. Thus, our results suggest that cortactin has multiple mechanisms by which it can recruit and modulate the actin machinery and ultimately regulate cell migration.

Key words: Cortactin, N-WASP, SH3 domain, Cell migration, Actin polymerization


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