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The Scaffold Protein POSH Regulates Axon Outgrowth

机译:支架蛋白POSH调节轴突生长。

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How scaffold proteins integrate signaling pathways with cytoskeletal components to drive axon outgrowth is not well understood. We report here that the multidomain scaffold protein Plenty of SH3s (POSH) regulates axon outgrowth. Reduction of POSH function by RNA interference (RNAi) enhances axon outgrowth in differentiating mouse primary cortical neurons and in neurons derived from mouse P19 cells, suggesting POSH negatively regulates axon outgrowth. Complementation analysis reveals a requirement for the third Src homology (SH) 3 domain of POSH, and we find that the actomyosin regulatory protein Shroom3 interacts with this domain of POSH. Inhibition of Shroom3 expression by RNAi leads to increased process lengths, as observed for POSH RNAi, suggesting that POSH and Shroom function together to inhibit process outgrowth. Complementation analysis and interference of protein function by dominant-negative approaches suggest that Shroom3 recruits Rho kinase to inhibit process outgrowth. Furthermore, inhibition of myosin II function reverses the POSH or Shroom3 RNAi phenotype, indicating a role for myosin II regulation as a target of the POSH–Shroom complex. Collectively, these results suggest that the molecular scaffold protein POSH assembles an inhibitory complex that links to the actin–myosin network to regulate neuronal process outgrowth.
机译:支架蛋白如何将信号传导途径与细胞骨架成分整合以驱动轴突生长尚不清楚。我们在这里报告,SH3s(POSH)的多域支架蛋白大量调节轴突的生长。 RNA干扰(RNAi)降低POSH功能可增强分化的小鼠原代皮层神经元和源自小鼠P19细胞的神经元中的轴突生长,表明POSH负调控轴突的生长。互补分析揭示了对POSH的第三个Src同源性(SH)3域的要求,我们发现放线菌素调节蛋白Shroom3与POSH的此域相互作用。如对POSH RNAi观察到的那样,RNAi对Shroom3表达的抑制导致过程长度增加,这表明POSH和Shroom共同发挥作用,抑制了过程的生长。互补性分析和显性负性方法对蛋白质功能的干扰表明,Shroom3募集了Rho激酶来抑制过程的生长。此外,抑制肌球蛋白II功能可逆转POSH或Shroom3 RNAi表型,表明肌球蛋白II调控作为POSH-Shroom复合体的靶标具有一定作用。总的来说,这些结果表明分子支架蛋白POSH组装了一种抑制复合物,该复合物与肌动蛋白-肌球蛋白网络相连,以调节神经元过程的生长。

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