Institute of Molecular Medicine, College of Medicine, National Taiwan University, Taipei, Taiwan.
PLoS Genet. 2020 Feb 14;16(2):e1008626. doi: 10.1371/journal.pgen.1008626. eCollection 2020 Feb.
Neuronal pruning is a commonly observed phenomenon for the developing nervous systems to ensure precise wiring of neural circuits. The function of Ik2 kinase and its downstream mediator, Spindle-F (Spn-F), are essential for dendrite pruning of Drosophila sensory neurons during development. However, little is known about how Ik2/Spn-F signaling is transduced in neurons and ultimately results in dendrite pruning. Our genetic analyses and rescue experiments demonstrated that the small GTPase Rab11, especially the active GTP-bound form, is required for dendrite pruning. We also found that Rab11 shows genetic interactions with spn-F and ik2 on pruning. Live imaging of single neurons and antibody staining reveal normal Ik2 kinase activation in Rab11 mutant neurons, suggesting that Rab11 could have a functional connection downstream of and/or parallel to the Ik2 kinase signaling. Moreover, we provide biochemical evidence that both the Ik2 kinase activity and the formation of Ik2/Spn-F/Rab11 complexes are central to promote Rab11 activation in cells. Together, our studies reveal that a critical role of Ik2/Spn-F signaling in neuronal pruning is to promote Rab11 activation, which is crucial for dendrite pruning in neurons.
神经元修剪是发育中神经系统中常见的现象,可确保神经回路的精确布线。Ik2 激酶及其下游介质 Spindle-F(Spn-F)的功能对于果蝇感觉神经元在发育过程中的树突修剪至关重要。然而,对于 Ik2/Spn-F 信号如何在神经元中转导并最终导致树突修剪知之甚少。我们的遗传分析和挽救实验表明,小分子 GTPase Rab11,特别是活性 GTP 结合形式,对于树突修剪是必需的。我们还发现 Rab11 在修剪过程中与 spn-F 和 ik2 存在遗传相互作用。单神经元的活体成像和抗体染色显示 Rab11 突变神经元中 Ik2 激酶的正常激活,这表明 Rab11 可以在 Ik2 激酶信号的下游和/或平行具有功能连接。此外,我们提供了生化证据,表明 Ik2 激酶活性和 Ik2/Spn-F/Rab11 复合物的形成对于促进细胞中 Rab11 的激活至关重要。总之,我们的研究揭示了 Ik2/Spn-F 信号在神经元修剪中的关键作用是促进 Rab11 的激活,这对于神经元中的树突修剪至关重要。