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首页> 外文期刊>Molecular biology of the cell >The activation of ezrin–radixin–moesin proteins is regulated by netrin-1 through Src kinase and RhoA/Rho kinase activities and mediates netrin-1–induced axon outgrowth
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The activation of ezrin–radixin–moesin proteins is regulated by netrin-1 through Src kinase and RhoA/Rho kinase activities and mediates netrin-1–induced axon outgrowth

机译:netrin-1通过Src激酶和RhoA / Rho激酶活性调节ezrin-radixin-moesin蛋白的活化,并介导netrin-1诱导的轴突生长。

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摘要

The receptor Deleted in Colorectal Cancer (DCC) mediates the attractive response of axons to the guidance cue netrin-1 during development. On netrin-1 stimulation, DCC is phosphorylated and induces the assembly of signaling complexes within the growth cone, leading to activation of cytoskeleton regulators, namely the GTPases Rac1 and Cdc42. The molecular mechanisms that link netrin-1/DCC to the actin machinery remain unclear. In this study we seek to demonstrate that the actin-binding proteins ezrin–radixin–moesin (ERM) are effectors of netrin-1/DCC signaling in embryonic cortical neurons. We show that ezrin associates with DCC in a netrin-1–dependent manner. We demonstrate that netrin-1/DCC induces ERM phosphorylation and activation and that the phosphorylation of DCC is required in that context. Moreover, Src kinases and RhoA/Rho kinase activities mediate netrin-1–induced ERM phosphorylation in neurons. We also observed that phosphorylated ERM proteins accumulate in growth cone filopodia, where they colocalize with DCC upon netrin-1 stimulation. Finally, we show that loss of ezrin expression in cortical neurons significantly decreases axon outgrowth induced by netrin-1. Together, our findings demonstrate that netrin-1 induces the formation of an activated ERM/DCC complex in growth cone filopodia, which is required for netrin-1–dependent cortical axon outgrowth.
机译:在结直肠癌(DCC)中删除的受体介导了轴突在发育过程中对指导球蛋白netrin-1的吸引力反应。在netrin-1刺激下,DCC磷酸化并诱导生长锥内的信号复合物装配,从而导致细胞骨架调节剂,即GTPases Rac1和Cdc42活化。尚不清楚将netrin-1 / DCC连接到肌动蛋白机制的分子机制。在这项研究中,我们试图证明肌动蛋白结合蛋白ezrin-radixin-moesin(ERM)是胚皮质神经元中netrin-1 / DCC信号传导的效应子。我们显示ezrin以依赖netrin-1的方式与DCC相关联。我们证明netrin-1 / DCC诱导ERM磷酸化和激活,并且在这种情况下需要DCC的磷酸化。此外,Src激酶和RhoA / Rho激酶活性介导netrin-1诱导的神经元ERM磷酸化。我们还观察到磷酸化的ERM蛋白积聚在生长锥体丝状伪足中,在netrin-1刺激下它们与DCC共定位。最后,我们显示皮质神经元中ezrin表达的丧失显着降低了netrin-1诱导的轴突生长。在一起,我们的发现表明netrin-1诱导了生长锥状丝状伪足中活化ERM / DCC复合物的形成,这是netrin-1依赖性皮质轴突生长所必需的。

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