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Involvement of an SHP-2-Rho Small G Protein Pathway in Hepatocyte Growth Factor/Scatter Factor–induced Cell Scattering

机译:SHP-2-Rho小G蛋白途径参与肝细胞 生长因子/散射因子诱导的细胞散射

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摘要

Hepatocyte growth factor/scatter factor (HGF/SF) induces cell scattering through the tyrosine kinase–type HGF/SF receptor c-Met. We have previously shown that Rho small G protein (Rho) is involved in the HGF/SF-induced scattering of Madin-Darby canine kidney (MDCK) cells by regulating at least the assembly and disassembly of stress fibers and focal adhesions, but it remains unknown how c-Met regulates Rho activity. We have found here a novel signaling pathway of c-Met consisting of SHP-2-Rho that regulates the assembly and disassembly of stress fibers and focal adhesions in MDCK cells. SHP-2 is a protein-tyrosine phosphatase that contains src homology-2 domains. Expression of a dominant negative mutant of SHP-2 (SHP-2-C/S) markedly increased the formation of stress fibers and focal adhesions in MDCK cells and inhibited their scattering. C3, a Clostridium botulinum ADP-ribosyltransferase, and Y-27632, a specific inhibitor for ROCK, reversed the stimulatory effect of SHP-2-C/S on stress fiber formation and the inhibitory effect on cell scattering. Vav2 is a GDP/GTP exchange protein for Rho. Expression of a dominant negative mutant of Vav2 blocked the stimulatory effect of SHP-2-C/S on stress fiber formation. Conversely, expression of mutants of Vav2 that increased stress fiber formation inhibited HGF/SF-induced cell scattering. These results indicate that SHP-2 physiologically modulates the activity of Rho to form stress fibers and focal adhesions and thereby regulates HGF/SF-induced cell scattering. In addition, Vav2 may be involved in the SHP-2-Rho pathway.
机译:肝细胞生长因子/散射因子(HGF / SF)通过酪氨酸激酶型HGF / SF受体c-Met诱导细胞散射。先前我们已经表明,Rho小G蛋白(Rho)至少通过调节应力纤维和粘着斑的组装和拆卸,参与了HGF / SF诱导的Madin-Darby犬肾(MDCK)细胞的散射,但它仍然存在未知c-Met如何调节Rho活性。我们在这里发现了由SHP-2-Rho组成的c-Met的新型信号通路,该通路调节MDCK细胞中应力纤维的组装和拆卸以及粘着斑。 SHP-2是一种蛋白酪氨酸磷酸酶,包含src同源2域。 SHP-2(SHP-2-C / S)的显性负突变体的表达显着增加了MDCK细胞中应力纤维的形成和粘着斑并抑制了它们的扩散。 C3,肉毒梭菌ADP-核糖基转移酶,和ROCK的特异性抑制剂Y-27632,逆转了SHP-2-C / S对应激纤维形成的刺激作用以及对细胞散射的抑制作用。 Vav2是Rho的GDP / GTP交换蛋白。表达优势 Vav2的负突变体阻止了SHP-2-C / S对SHP-2-C / S的刺激作用 应力纤维的形成。相反,Vav2突变体的表达 应力纤维形成增加会抑制HGF / SF诱导的细胞 散射。这些结果表明SHP-2在生理上调节 Rho形成应力纤维和粘着斑的活性以及 从而调节HGF / SF诱导的细胞散射。此外,Vav2可能 参与SHP-2-Rho途径。

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