Department of Neurobiology, Yale University School of Medicine and Kavli Institute for Neuroscience, 06510 New Haven, CT, USA.
Cereb Cortex. 2013 Nov;23(11):2632-43. doi: 10.1093/cercor/bhs252. Epub 2012 Aug 14.
The upper layers (II-IV) are the most prominent distinguishing feature of mammalian neocortex compared with avian or reptilian dorsal cortex, and are vastly expanded in primates. Although the time-dependent embryonic generation of upper-layer cells is genetically instructed within their parental progenitors, mechanisms governing cell-intrinsic fate transitions remain obscure. POU-homeodomain transcription factors Pou3f3 and Pou3f2 (Brn1 and Brn2) are known to label postmitotic upper-layer cells, and are redundantly required for their production. We find that the onset of Pou3f3/2 expression actually occurs in ventricular zone (VZ) progenitors, and that Pou3f3/2 subsequently label neural progeny switching from deep-layer Ctip2(+) identity to Satb2(+) upper-layer fate as they migrate to proper superficial positions. By using an Engrailed dominant-negative repressor, we show that sustained neurogenesis after the deep- to upper-layer transition requires the proneual action of Pou3fs in VZ progenitors. Conversely, single-gene overexpression of any Pou3f in early neural progenitors is sufficient to specify the precocious birth of Satb2(+) daughter neurons that extend axons to the contralateral hemisphere, as well as exhibit robust pia-directed migration that is characteristic of upper-layer cells. Finally, we demonstrate that Pou3fs influence multiple stages of neurogenesis by suppressing Notch effector Hes5, and promoting the expression of proneural transcription factors Tbr2 and Tbr1.
上层(II-IV)是哺乳动物新皮质与鸟类或爬行类背侧皮质相比最显著的区别特征,在灵长类动物中得到了极大的扩展。尽管上层细胞的时间依赖性胚胎发生是在其亲代祖细胞中遗传指令的,但控制细胞内在命运转变的机制仍然不清楚。POU 类 homeodomain 转录因子 Pou3f3 和 Pou3f2(Brn1 和 Brn2)已知标记生后上层细胞,并且冗余地需要它们的产生。我们发现 Pou3f3/2 的表达实际上发生在脑室区(VZ)祖细胞中,并且 Pou3f3/2 随后标记从深层 Ctip2(+) 身份转换为 Satb2(+)上层命运的神经祖细胞,因为它们迁移到适当的浅层位置。通过使用 Engrailed 显性负抑制剂,我们表明,从深层到上层的转变后持续的神经发生需要 Pou3fs 在 VZ 祖细胞中的前神经作用。相反,早期神经祖细胞中任何单个 Pou3f 的单基因过表达足以指定 Satb2(+) 子神经元的早熟出生,这些神经元延伸轴突到对侧半球,并表现出强烈的向软脑膜迁移的特征,这是上层细胞的特征。最后,我们证明 Pou3fs 通过抑制 Notch 效应因子 Hes5 并促进神经前转录因子 Tbr2 和 Tbr1 的表达来影响神经发生的多个阶段。