Broihier Heather T, Kuzin Alexander, Zhu Yi, Odenwald Ward, Skeath James B
Department of Genetics, Washington University School of Medicine, 4566 Scott Avenue, St Louis, MO 63110, USA.
Development. 2004 Nov;131(21):5233-42. doi: 10.1242/dev.01394. Epub 2004 Sep 29.
The regulatory networks acting in individual neurons to control their stereotyped differentiation, connectivity, and function are not well understood. Here, we demonstrate that homeodomain protein Nkx6 is a key member of the genetic network of transcription factors that specifies neuronal fates in Drosophila. Nkx6 collaborates with the homeodomain protein Hb9 to specify ventrally projecting motoneuron fate and to repress dorsally projecting motoneuron fate. While Nkx6 acts in parallel with hb9 to regulate motoneuron fate, we find that Nkx6 plays a distinct role to promote axonogenesis, as axon growth of Nkx6-positive motoneurons is severely compromised in Nkx6 mutant embryos. Furthermore, Nkx6 is necessary for the expression of the neural adhesion molecule Fasciclin III in Nkx6-positive motoneurons. Thus, this work demonstrates that Nkx6 acts in a specific neuronal population to link neuronal subtype identity to neuronal morphology and connectivity.
在单个神经元中起作用以控制其定型分化、连接性和功能的调控网络尚未得到充分理解。在这里,我们证明同源域蛋白Nkx6是果蝇中转录因子遗传网络的关键成员,该网络决定神经元命运。Nkx6与同源域蛋白Hb9协作,以确定腹侧投射运动神经元的命运,并抑制背侧投射运动神经元的命运。虽然Nkx6与hb9并行作用以调节运动神经元命运,但我们发现Nkx6在促进轴突形成中发挥独特作用,因为在Nkx6突变胚胎中,Nkx6阳性运动神经元的轴突生长严重受损。此外,Nkx6对于神经粘附分子Fasciclin III在Nkx6阳性运动神经元中的表达是必需的。因此,这项工作表明Nkx6在特定的神经元群体中发挥作用,将神经元亚型身份与神经元形态和连接性联系起来。