首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Modular and Distinct Plexin-A4/FARP2/Rac1 Signaling Controls Dendrite Morphogenesis
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Modular and Distinct Plexin-A4/FARP2/Rac1 Signaling Controls Dendrite Morphogenesis

机译:模块化和不同的Plexin-A4 / Farp2 / Rac1信号传导控制枝晶形态发生

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Diverse neuronal populations with distinct cellular morphologies coordinate the complex function of the nervous system. Establishment of distinct neuronal morphologies critically depends on signaling pathways that control axonal and dendritic development. The Sema3A-Nrp1/PlxnA4 signaling pathway promotes cortical neuron basal dendrite arborization but also repels axons. However, the downstream signaling components underlying these disparate functions of Sema3A signaling are undear. Using the novel P/xnA4(KRK-AAA) knock-in male and female mice, generated by CRISPR/cas9, we show here that the KRK motif in the PlxnA4 cytoplasmic domain is required for Sema3A-mediated cortical neuron dendritic elaboration but is dispensable for inhibitory axon guidance. The RhoGEF FARP2, which binds to the KRK motif, shows identical functional specificity as the KRK motif in the PlxnA4 receptor. We find that Sema3A activates the small GTPase Rac1, and that Rac1 activity is required for dendrite elaboration but not axon growth cone collapse. This work identifies a novel Sema3A-Nrp1/PlxnA4/FARP2/Rac1 signaling pathway that specifically controls dendritic morphogenesis but is dispensable for repulsive guidance events. Overall, our results demonstrate that the divergent signaling output from multifunctional receptor complexes critically depends on distinct signaling motifs, highlighting the modular nature of guidance cue receptors and its potential to regulate diverse cellular responses.
机译:多样的神经元群体具有不同的细胞形态坐标神经系统的复杂功能。不同的神经元形态的建立关键取决于信号通路对照轴突和树突发展。该检测Sema3A-NRP1 / PLXNA4信号通路促进皮质神经元树突基础树枝状,也排斥轴突。然而,底层检测Sema3A信令的这些不同的功能的下游信号传导组件是undear。使用该新型P / xnA4(KRK-AAA)敲入雄性和雌性小鼠,通过CRISPR / cas9产生,我们在这里表明,在PLXNA4胞质结构域的KRK基序所需的检测Sema3A介导的皮层神经元的树突的阐述,但不是必要的为抑制轴突导向。的RhoGEF FARP2,其结合的基序KRK,表演相同功能特异性如PLXNA4受体KRK基序。我们发现,检测Sema3A激活小GTP酶Rac1的,而Rac1的活动所需的枝晶的阐述,但不是轴突生长锥崩溃。这项工作识别特异性控制树突状形态形成,但是可有可无的排斥性引导事件的新的检测Sema3A-NRP1 / PLXNA4 / FARP2 / Rac1的信号传导途径。总的来说,我们的结果表明,从多功能受体复合输出发散信号关键取决于不同的信号图案,突出指导提示受体的模块化特性和潜力,调节多种细胞反应。

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