Li Hua Shun, Wang Denan, Shen Qin, Schonemann Marcus D, Gorski Jessica A, Jones Kevin R, Temple Sally, Jan Lily Yeh, Jan Yuh Nung
Howard Hughes Medical Institute, Departments of Physiology and Biochemistry, University of California, San Francisco, San Francisco, CA 94143, USA.
Neuron. 2003 Dec 18;40(6):1105-18. doi: 10.1016/s0896-6273(03)00755-4.
Numb and Numblike, conserved homologs of Drosophila Numb, have been implicated in cortical neurogenesis; however, analysis of their involvement in later stages of cortical development has been hampered by early lethality of double mutants in previous studies. Using Emx1(IREScre) to induce more restricted inactivation of Numb in the dorsal forebrain of numblike null mice beginning at E9.5, we have generated viable double mutants that displayed striking brain defects. It was thus possible to examine neurogenesis during the later peak phase (E12.5-E16.5). Loss of Numb and Numblike in dorsal forebrain resulted in neural progenitor hyperproliferation, delayed cell cycle exit, impaired neuronal differentiation, and concomitant defects in cortical morphogenesis. These findings reveal novel and essential function of Numb and Numblike during the peak period of cortical neurogenesis. Further, these double mutant mice provide an unprecedented viable animal model for severe brain malformations due to defects in neural progenitor cells.
麻木蛋白(Numb)和类麻木蛋白(Numblike)是果蝇麻木蛋白的保守同源物,它们与皮质神经发生有关;然而,在之前的研究中,由于双突变体的早期致死性,对它们在皮质发育后期阶段参与情况的分析受到了阻碍。利用Emx1(IREScre)在E9.5开始诱导类麻木蛋白基因敲除小鼠背侧前脑的麻木蛋白更局限的失活,我们获得了具有明显脑部缺陷的存活双突变体。因此,有可能在后期高峰期(E12.5 - E16.5)检查神经发生情况。背侧前脑中麻木蛋白和类麻木蛋白的缺失导致神经祖细胞过度增殖、细胞周期退出延迟、神经元分化受损以及皮质形态发生的相应缺陷。这些发现揭示了麻木蛋白和类麻木蛋白在皮质神经发生高峰期的新的重要功能。此外,这些双突变小鼠为因神经祖细胞缺陷导致的严重脑畸形提供了前所未有的存活动物模型。