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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Formin Proteins of the DAAM Subfamily Play a Role during Axon Growth
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Formin Proteins of the DAAM Subfamily Play a Role during Axon Growth

机译:DAAM亚家族的Formin蛋白在轴突生长过程中发挥作用

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摘要

The regulation of growth cone actin dynamics is a critical aspect of axonal growth control. Among the proteins that are directly involved in the regulation of actin dynamics, actin nucleation factors play a pivotal role by promoting the formation of novel actin filaments. However, the essential nucleation factors in developing neurons have so far not been clearly identified. Here, we show expression data, and use true loss-of-function analysis and targeted expression of activated constructs to demonstrate that the Drosophila formin DAAM plays a critical role in axonal morphogenesis. In agreement with this finding, we show that dDAAM is required for filopodia formation at axonal growth cones. Our genetic interaction, immunoprecipitation and protein localization studies argue that dDAAM acts in concert with Rac GTPases, Profilin and Enabled during axonal growth regulation. We also show that mouse Daam1 rescues the CNS defects observed in dDAAM mutant flies to a high degree, and vice versa, that Drosophila DAAM induces the formation of neurite-like protrusions when expressed in mouse P19 cells, strongly suggesting that the function of DAAM in developing neurons has been conserved during evolution.
机译:生长锥肌动蛋白动力学的调节是轴突生长控制的关键方面。在直接参与肌动蛋白动力学调节的蛋白质中,肌动蛋白成核因子通过促进新型肌动蛋白丝的形成发挥关键作用。然而,到目前为止,尚未清楚地确​​定发育中的神经元中的基本成核因子。在这里,我们显示表达数据,并使用真实的功能丧失分析和激活构建体的靶向表达来证明果蝇formin DAAM在轴突形态发生中起关键作用。与这一发现相一致,我们表明,dDAAM是在轴突生长锥处形成丝状伪足所必需的。我们的遗传相互作用,免疫沉淀和蛋白质定位研究认为,dDAAM在轴突生长调节过程中与Rac GTPases,Profilin和Enabled协同作用。我们还显示,小鼠Daam1可以高度挽救dDAAM突变体果蝇中观察到的CNS缺陷,反之亦然,果蝇DAAM在小鼠P19细胞中表达时会诱导神经突样突起的形成,强烈暗示了DAAM的功能发育中的神经元在进化过程中一直被保守。

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