Department of Neurobiology, Key Laboratory of Medical Neurobiology of Ministry of Health of China, Key Laboratory of Neurobiology of Zhejiang Province, Zhejiang University School of Medicine, Hangzhou, China.
Department of Oncology, Cross Cancer Institute, University of Alberta, Edmonton, Alberta, Canada.
Cereb Cortex. 2018 Oct 1;28(10):3457-3467. doi: 10.1093/cercor/bhx212.
Multipolar-to-bipolar transition (MBT) is crucial for the neuronal migration and positioning in the neocortex. Reelin-Disabled-1 (Dab1) signaling plays a pivotal role in neuronal migration, yet how Dab1 coordinatively regulates downstream molecules to affect MBT remains unclear. We have previously found that alternative splicing produces multiple Dab1 isoforms with different tyrosine motifs and differential ability to recruit downstream effectors. Here, we report that splicing of Dab1 exons 7 and 8 and 9bc dynamically regulates the inclusion and activities of Dab1 tyrosine motifs in the neocortex. By in utero electroporation, we show that expression of Dab1 isoforms missing exons 7 and 8 or retaining exons 9bc in WT neurons resulted in neuronal migration defects with attenuated Dab1 tyrosine phosphorylation, disrupted leading process extension, and disorientated multipolar neurons in the multipolar accumulation zone. Introducing the canonical Dab1 form, but not those missing exons 7 and 8 or retaining exons 9bc, into Dab1-deficient neurons promoted MBT and rescued neuronal migration defects, suggesting that alternative splicing of Dab1 modulates the tyrosine motif switch and mediates MBT of cortical neurons. Our study reveals a critical mechanism by which Dab1 alternative splicing coordinately controls MBT and neuronal migration in a spatiotemporal manner.
多极-双极转换(MBT)对于新皮层中的神经元迁移和定位至关重要。 Reelin-Disabled-1(Dab1)信号在神经元迁移中起着关键作用,但 Dab1 如何协调调节下游分子以影响 MBT 尚不清楚。我们之前发现,选择性剪接产生了具有不同酪氨酸基序和募集下游效应子的不同能力的多种 Dab1 异构体。在这里,我们报告说 Dab1 外显子 7 和 8 以及 9bc 的剪接动态调节了新皮层中 Dab1 酪氨酸基序的包含和活性。通过在体电穿孔,我们表明在 WT 神经元中表达缺失外显子 7 和 8 或保留外显子 9bc 的 Dab1 异构体导致神经元迁移缺陷,Dab1 酪氨酸磷酸化减弱,先导过程延伸中断,多极神经元在多极积累区定向紊乱。将经典的 Dab1 形式而不是缺失外显子 7 和 8 或保留外显子 9bc 的形式引入 Dab1 缺陷神经元中促进了 MBT 并挽救了神经元迁移缺陷,表明 Dab1 的选择性剪接调节了酪氨酸基序转换并介导了皮质神经元的 MBT。我们的研究揭示了 Dab1 选择性剪接以时空协调方式共同控制 MBT 和神经元迁移的关键机制。