Department of Neuroscience and Cell Biology, University of Texas Medical Branch School of Medicine, Galveston, TX, 77598, USA.
Dev Biol. 2011 Sep 15;357(2):283-94. doi: 10.1016/j.ydbio.2011.06.025. Epub 2011 Jun 25.
In the nervous system, neurons form in different regions, then they migrate and occupy specific positions. We have previously shown that RP2/sib, a well-studied neuronal pair in the Drosophila ventral nerve cord (VNC), has a complex migration route. Here, we show that the Hem protein, via the WAVE complex, regulates migration of GMC-1 and its progeny RP2 neuron. In Hem or WAVE mutants, RP2 neuron either abnormally migrates, crossing the midline from one hemisegment to the contralateral hemisegment, or does not migrate at al and fail to send out its axon projection. We report that Hem regulates neuronal migration through stabilizing WAVE. Since Hem and WAVE normally form a complex, our data argues that in the absence of Hem, WAVE, which is presumably no longer in a complex, becomes susceptible to degradation. We also find that Abelson tyrosine kinase affects RP2 migration in a similar manner as Hem and WAVE, and appears to operate via WAVE. However, while Abl negatively regulates the levels of WAVE, it regulates migration via regulating the activity of WAVE. Our results also show that during the degradation of WAVE, Hem function is opposite to that of and downstream of Abl.
在神经系统中,神经元在不同区域形成,然后迁移并占据特定位置。我们之前已经表明,在果蝇腹神经索(VNC)中研究充分的神经元对 RP2/sib 具有复杂的迁移途径。在这里,我们表明 Hem 蛋白通过 WAVE 复合物调节 GMC-1 和其祖细胞 RP2 神经元的迁移。在 Hem 或 WAVE 突变体中,RP2 神经元要么异常迁移,从中线穿过一个半节段到对侧半节段,要么根本不迁移,并且不能发出其轴突投射。我们报告说,Hem 通过稳定 WAVE 来调节神经元迁移。由于 Hem 和 WAVE 通常形成复合物,我们的数据表明,在没有 Hem 的情况下,WAVE 可能不再处于复合物中,因此容易降解。我们还发现,Abl 酪氨酸激酶以类似于 Hem 和 WAVE 的方式影响 RP2 迁移,并且似乎通过 WAVE 起作用。然而,虽然 Abl 负调节 WAVE 的水平,但它通过调节 WAVE 的活性来调节迁移。我们的结果还表明,在 WAVE 降解期间,Hem 的功能与 Abl 的功能相反,并且位于 Abl 的下游。