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JCS ePress online publication date 3 Nov 2009
doi: 10.1242/jcs.048439


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Research Article

Localization of nectin-free afadin at the leading edge and its involvement in directional cell movement induced by platelet-derived growth factor


Muneaki Miyata, Hisakazu Ogita, Hitomi Komura, Shinsuke Nakata, Ryoko Okamoto, Misa Ozaki, Takashi Majima, Naomi Matsuzawa, Satoshi Kawano, Akihiro Minami, Masumi Waseda, Naoyuki Fujita, Kiyohito Mizutani, Yoshiyuki Rikitake, and Yoshimi Takai*
* Author for correspondence (e-mail: ytakai{at}med.kobe-u.ac.jp)

Afadin is an actin-filament-binding protein that binds to nectin, an immunoglobulin-like cell-cell adhesion molecule, and plays an important role in the formation of adherens junctions. Here, we show that afadin, which did not bind to nectin and was localized at the leading edge of moving cells, has another role: enhancement of the directional, but not random, cell movement. When NIH3T3 cells were stimulated with platelet-derived growth factor (PDGF), afadin colocalized with PDGF receptor, {alpha}v{beta}3 integrin and nectin-like molecule-5 at the leading edge and facilitated the formation of leading-edge structures and directional cell movement in the direction of PDGF stimulation. However, these phenotypes were markedly perturbed by knockdown of afadin, and were dependent on the binding of afadin to active Rap1. Binding of Rap1 to afadin was necessary for the recruitment of afadin and the tyrosine phosphatase SHP-2 to the leading edge. SHP-2 was previously reported to tightly regulate the activation of PDGF receptor and its downstream signaling pathway for the formation of the leading edge. These results indicate that afadin has a novel role in PDGF-induced directional cell movement, presumably in cooperation with active Rap1 and SHP-2.


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