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NEDD9 Stabilizes Focal Adhesions, Increases Binding to the Extra-Cellular Matrix and Differentially Effects 2D versus 3D Cell Migration

机译:NEDD9稳定局灶性粘附,增加与细胞外基质的结合,并差异性影响2D与3D细胞迁移

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摘要

The speed of cell migration on 2-dimensional (2D) surfaces is determined by the rate of assembly and disassembly of clustered integrin receptors known as focal adhesions. Different modes of cell migration that have been described in 3D environments are distinguished by their dependence on integrin-mediated interactions with the extra-cellular matrix. In particular, the mesenchymal invasion mode is the most dependent on focal adhesion dynamics. The focal adhesion protein NEDD9 is a key signalling intermediary in mesenchymal cell migration, however whether NEDD9 plays a role in regulating focal adhesion dynamics has not previously been reported. As NEDD9 effects on 2D migration speed appear to depend on the cell type examined, in the present study we have used mouse embryo fibroblasts (MEFs) from mice in which the NEDD9 gene has been depleted (NEDD9 −/− MEFs). This allows comparison with effects of other focal adhesion proteins that have previously been demonstrated using MEFs. We show that focal adhesion disassembly rates are increased in the absence of NEDD9 expression and this is correlated with increased paxillin phosphorylation at focal adhesions. NEDD9−/− MEFs have increased rates of migration on 2D surfaces, but conversely, migration of these cells is significantly reduced in 3D collagen gels. Importantly we show that myosin light chain kinase is activated in 3D in the absence of NEDD9 and is conversely inhibited in 2D cultures. Measurement of adhesion strength reveals that NEDD9−/− MEFs have decreased adhesion to fibronectin, despite upregulated α5β1 fibronectin receptor expression. We find that β1 integrin activation is significantly suppressed in the NEDD9−/−, suggesting that in the absence of NEDD9 there is decreased integrin receptor activation. Collectively our data suggest that NEDD9 may promote 3D cell migration by slowing focal adhesion disassembly, promoting integrin receptor activation and increasing adhesion force to the ECM.
机译:二维(2D)表面上细胞迁移的速度取决于成簇的整联蛋白受体(称为粘着斑)的组装和拆卸速率。在3D环境中描述的不同模式的细胞迁移,以其对整联蛋白介导的与细胞外基质相互作用的依赖性来区分。特别是,间充质浸润模式最依赖于粘着斑动力学。粘着斑蛋白NEDD9是间充质细胞迁移的关键信号中介,但是NEDD9是否在调节粘着斑动力学中发挥作用尚未见报道。由于NEDD9对2D迁移速度的影响似乎取决于所检查的细胞类型,因此在本研究中,我们使用了NEDD9基因已经耗尽的小鼠的小鼠胚胎成纤维细胞(MEF)(NEDD9-/-MEF)。这可以与以前使用MEF证明的其他粘着斑蛋白的效果进行比较。我们显示,在不存在NEDD9表达的情况下,粘着斑的拆卸速率增加,这与在粘着斑上的paxillin磷酸化增加有关。 NEDD9-/-MEF在2D表面上的迁移速率增加,但是相反,在3D胶原蛋白凝胶中这些细胞的迁移明显减少。重要的是,我们表明,在没有NEDD9的情况下,肌球蛋白轻链激酶在3D中被激活,而在2D培养物中则相反。粘附强度的测量显示,尽管α5β1纤连蛋白受体表达上调,但NEDD9-/-MEFs对纤连蛋白的粘附性降低。我们发现在NEDD9-/-中,β1整合素激活被显着抑制,这表明在没有NEDD9的情况下,整合素受体激活降低。总体而言,我们的数据表明NEDD9可能通过减缓粘着斑的拆卸,促进整联蛋白受体的活化并增加对ECM的粘附力来促进3D细胞迁移。

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