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G12/13-RhoA信号通路有助于溶血磷脂酸刺激的细胞高效迁移。

The G12/13-RhoA signaling pathway contributes to efficient lysophosphatidic acid-stimulated cell migration.

作者信息

Bian D, Mahanivong C, Yu J, Frisch S M, Pan Z K, Ye R D, Huang S

机构信息

Department of Immunology, The Scripps Research Institute, La Jolla, CA 92037, USA.

出版信息

Oncogene. 2006 Apr 6;25(15):2234-44. doi: 10.1038/sj.onc.1209261.

Abstract

The membrane redistribution and phosphorylation of focal adhesion kinase (FAK) have been reported to be important for cell migration. We previously showed that Lysophosphatidic acid (LPA) induced FAK membrane redistribution and autophosphorylation in ovarian cancer SK-OV3 cells and the signaling pathway consisting of Gi-Ras-MEKK1 mediated LPA-induced FAK membrane redistribution but not FAK autophosphorylation. We also showed that the disruption of the Gi-Ras-MEKK1 pathway led to a significant reduction in LPA-stimulated cell migration. These findings raised the question of whether LPA-induced FAK autophosphorylation was required for LPA-stimulated cell migration and what signaling mechanism was involved in LPA-induced FAK autophosphorylation. In this study, we expressed the membrane anchored wild-type FAK (CD2-FAK) in SK-OV3 cells and found that the expression of CD2-FAK greatly rescued LPA-stimulated cell migration in Gi or Ras-inhibited cells. However, Gi inhibitor pertussis toxin or dominant-negative H-Ras still significantly inhibited LPA-stimulated cell migration in cells expressing the membrane anchored FAK containing a mutation in the autophosphorylation site [CD2-FAK(Y397A)]. These results suggest that FAK autophosphorylation plays a role in LPA-stimulated cell migration. With the aid of p115RhoGEF-RGS, G12 and G13 minigenes to inhibit G12/13, we found that the G12/13 pathway was required for LPA-induced FAK autophosphorylation and efficient cell migration. Moreover, LPA activated RhoA and Rho kinase (ROCK) in a G12/13-dependent manner and their activities were required for LPA-induced FAK autophosphorylation. However, Rho or ROCK inhibitors displayed no effect on LPA-induced FAK membrane redistribution although they abolished LPA-induced cytoskeleton reorganization. Our studies show that the G12/13-RhoA-ROCK signaling pathway mediates LPA-induced FAK autophosphorylation and contributes to LPA-stimulated cell migration.

摘要

已有报道称,粘着斑激酶(FAK)的膜再分布和磷酸化对细胞迁移很重要。我们之前发现,溶血磷脂酸(LPA)可诱导卵巢癌SK-OV3细胞中的FAK膜再分布和自磷酸化,且由Gi-Ras-MEKK1组成的信号通路介导了LPA诱导的FAK膜再分布,但不介导FAK自磷酸化。我们还发现,Gi-Ras-MEKK1通路的破坏会导致LPA刺激的细胞迁移显著减少。这些发现引发了以下问题:LPA刺激的细胞迁移是否需要LPA诱导的FAK自磷酸化,以及LPA诱导的FAK自磷酸化涉及何种信号机制。在本研究中,我们在SK-OV3细胞中表达了膜锚定的野生型FAK(CD2-FAK),并发现CD2-FAK的表达极大地挽救了Gi或Ras抑制细胞中LPA刺激的细胞迁移。然而,Gi抑制剂百日咳毒素或显性负性H-Ras仍能显著抑制表达膜锚定FAK且自磷酸化位点发生突变的细胞[CD2-FAK(Y397A)]中LPA刺激的细胞迁移。这些结果表明,FAK自磷酸化在LPA刺激的细胞迁移中起作用。借助p115RhoGEF-RGS、G12和G13小基因来抑制G12/13,我们发现G12/13通路是LPA诱导FAK自磷酸化和有效细胞迁移所必需的。此外,LPA以G12/13依赖的方式激活RhoA和Rho激酶(ROCK),且它们的活性是LPA诱导FAK自磷酸化所必需的。然而,Rho或ROCK抑制剂对LPA诱导的FAK膜再分布没有影响,尽管它们消除了LPA诱导的细胞骨架重组。我们的研究表明,G12/13-RhoA-ROCK信号通路介导LPA诱导的FAK自磷酸化,并促进LPA刺激的细胞迁移。

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