Brain Science Institute, RIKEN, 2-1 Hirosawa, Wako, Saitama 351-0198, Japan.
Dev Biol. 2011 Jan 15;349(2):147-59. doi: 10.1016/j.ydbio.2010.10.014. Epub 2010 Oct 20.
Sonic hedgehog (Shh) signaling regulates cell differentiation and proliferation during brain development. However, the role of Shh in neurogenesis during late gestation (embryonic day 13.5-18.5) remains unclear. Herein, we used a genetic approach and in utero electroporation to investigate the role of mouse Shh and patched homolog 1 (Ptch1), the putative receptor for Shh. Proliferating cortical intermediate (basal) progenitor cells (IPCs) were severely reduced in Shh mutant mice, suggesting that endogenous Shh signaling could play an essential role in cortical IPC development. During cortical neurogenesis, strong upregulation of Shh signaling enhanced the transition from ventricular zone (VZ) progenitors to ventralized IPCs, while low levels of signaling enhanced the generation and proliferation of cortical IPCs in the subventricular zone. The effects of Shh upregulation in this study were consistent with a phenotype of conditional loss of function of Ptch1, and the phenotype of a hypomorphic allele of Ptch1, respectively. These data indicated that endogenous Ptch1 mediates the broad effects of Shh on the transition from VZ progenitors to IPCs and activation of proliferation of the IPCs in the cortex during late gestational stages.
声波刺猬 (Shh) 信号在大脑发育过程中调节细胞分化和增殖。然而,Shh 在妊娠晚期(胚胎第 13.5-18.5 天)的神经发生中的作用尚不清楚。在此,我们使用遗传方法和子宫内电穿孔来研究小鼠 Shh 和 patched 同源物 1 (Ptch1)(Shh 的假定受体)的作用。Shh 突变小鼠中的增殖皮质中间(基底)祖细胞 (IPC) 严重减少,表明内源性 Shh 信号可能在皮质 IPC 发育中发挥重要作用。在皮质神经发生过程中,Shh 信号的强烈上调增强了从脑室区 (VZ) 祖细胞向腹侧化 IPC 的转化,而信号的低水平增强了侧脑室区皮质 IPC 的产生和增殖。本研究中 Shh 上调的影响分别与 Ptch1 条件功能丧失和 Ptch1 低功能等位基因的表型一致。这些数据表明,内源性 Ptch1 介导了 Shh 对从 VZ 祖细胞向 IPC 过渡以及在妊娠晚期激活皮质 IPC 增殖的广泛影响。