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首页> 外文期刊>Journal of Cell Science >Activation of either ERK1/2 or ERK5 MAP kinase pathways can lead to disruption of the actin cytoskeleton
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Activation of either ERK1/2 or ERK5 MAP kinase pathways can lead to disruption of the actin cytoskeleton

机译:ERK1 / 2或ERK5 MAP激酶途径的激活可导致肌动蛋白细胞骨架的破坏

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Oncogenic transformation often leads to the disruption of the actin cytoskeleton. Activation of the classical Ras-Raf-MEK1/2-ERK1/2 signalling cascade has been implicated in the effects of oncogenes such as Ras and Src on the cytoskeleton. Many of the studies of the effects of oncogenes on the cytoskeleton have made use of chemical inhibitors of MEK1/2 but it is now clear that these inhibitors also inactivate MEK5 in the MEK5-ERK5 MAP kinase pathway raising the possibility that this pathway may also be involved in oncogenic transformation. We therefore investigated whether activation of ERK5 can lead to disruption of the actin cytoskeleton. We show that activation of ERK5 can lead to loss of actin stress fibres, but by a distinct mechanism to ERK1/2. We demonstrate that ERK5 is activated by oncogenic Src as demonstrated 1663 by translocation of endogenous ERK5 from the cytoplasm to nucleus and activation of an ERK5-dependent transcriptional reporter and that ERK5 activation is required for Src-mediated transformation. We also show that in Src-transformed cells inhibition of ERK1/2 signalling is not sufficient for reappearance of the actin cytoskeleton. and that ERK5 activation contributes to cytoskeletal disruption by Src. Our results suggest that multiple MAP kinase pathways downstream of oncogenes participate in cytoskeletal alterations.
机译:致癌转化通常导致肌动蛋白细胞骨架的破坏。经典的Ras-Raf-MEK1 / 2-ERK1 / 2信号级联反应的激活与诸如Ras和Src等癌基因对细胞骨架的作用有关。关于癌基因对细胞骨架的影响的许多研究都利用了MEK1 / 2的化学抑制剂,但现在清楚的是,这些抑制剂也使MEK5-ERK5 MAP激酶途径中的MEK5失活,从而增加了该途径也可能是参与致癌转化。因此,我们研究了ERK5的激活是否会导致肌动蛋白细胞骨架的破坏。我们表明,ERK5的激活可以导致肌动蛋白应力纤维的损失,但通过对ERK1 / 2的独特机制。我们证明,致癌性Src激活ERK5,如1663年证明的那样,将内源性ERK5从细胞质转移到细胞核并激活ERK5依赖性转录报告基因,并且SRK介导的转化需要ERK5激活。我们还表明,在Src转化的细胞中,ERK1 / 2信号的抑制作用不足以使肌动蛋白细胞骨架重新出现。并且ERK5激活导致Src破坏细胞骨架。我们的结果表明,致癌基因下游的多个MAP激酶途径参与细胞骨架的改变。

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