Takahashi Kazuhide, Suzuki Katsuo
Molecular Cell Biology Division, Kanagawa Cancer Center Research Institute, Yokohama 241-0815, Japan.
Cell Signal. 2009 May;21(5):695-703. doi: 10.1016/j.cellsig.2009.01.007. Epub 2009 Jan 7.
Membrane transport of WAVE2 that leads to lamellipodia formation requires a small GTPase Rac1, the motor protein kinesin, and microtubules. Here we explore the possibility of whether the Rac1-dependent and kinesin-mediated WAVE2 transport along microtubules is regulated by a p21-activated kinase Pak as a downstream effector of Rac1. We find that Pak1 constitutively binds to WAVE2 and is transported with WAVE2 to the leading edge by stimulation with hepatocyte growth factor (HGF). Concomitantly, phosphorylation of tubulin-bound stathmin/Op18 at serine 25 (Ser25) and Ser38, microtubule growth, and stathmin/Op18 binding to kinesin-WAVE2 complex were induced. The HGF-induced WAVE2 transport, lamellipodia formation, stathmin/Op18 phosphorylation at Ser38 and binding to kinesin-WAVE2 complex, but not stathmin/Op18 phosphorylation at Ser25 and microtubule growth, were abrogated by Pak1 inhibitor IPA-3 and Pak1 depletion with small interfering RNA (siRNA). Moreover, stathmin/Op18 depletion with siRNA caused significant inhibition of HGF-induced WAVE2 transport and lamellipodia formation, with HGF-independent promotion of microtubule growth. Collectively, it is suggested that Pak1 plays a critical role in HGF-induced WAVE2 transport and lamellipodia formation by directing Pak1-WAVE2-kinesin complex toward the ends of growing microtubules through phosphorylation and recruitment of tubulin-bound stathmin/Op18 to the complex.
导致片状伪足形成的WAVE2的膜转运需要小GTP酶Rac1、运动蛋白驱动蛋白和微管。在这里,我们探讨了Rac1依赖且由驱动蛋白介导的WAVE2沿微管的转运是否受作为Rac1下游效应器的p21激活激酶Pak调控的可能性。我们发现,Pak1持续结合WAVE2,并在肝细胞生长因子(HGF)刺激下与WAVE2一起转运至前沿。同时,诱导了微管蛋白结合的信号素/Op18在丝氨酸25(Ser25)和Ser38处的磷酸化、微管生长以及信号素/Op18与驱动蛋白-WAVE2复合物的结合。Pak1抑制剂IPA-3和用小干扰RNA(siRNA)耗尽Pak1可消除HGF诱导的WAVE2转运、片状伪足形成、信号素/Op18在Ser38处的磷酸化以及与驱动蛋白-WAVE2复合物的结合,但不能消除信号素/Op18在Ser25处的磷酸化和微管生长。此外,用siRNA耗尽信号素/Op18会显著抑制HGF诱导的WAVE2转运和片状伪足形成,同时对HGF不依赖的微管生长有促进作用。总体而言,提示Pak1在HGF诱导的WAVE2转运和片状伪足形成中起关键作用,其通过磷酸化并将微管蛋白结合的信号素/Op18募集到复合物中,将Pak1-WAVE2-驱动蛋白复合物导向生长微管的末端。