Ferguson Kerry L, McClellan Kelly A, Vanderluit Jacqueline L, McIntosh William C, Schuurmans Carol, Polleux Franck, Slack Ruth S
Ottawa Health Research Institute, University of Ottawa, Ottawa, Ontario, Canada.
EMBO J. 2005 Dec 21;24(24):4381-91. doi: 10.1038/sj.emboj.7600887. Epub 2005 Nov 24.
Precise cell cycle regulation is critical for nervous system development. To assess the role of the cell cycle regulator, retinoblastoma (Rb) protein, in forebrain development, we studied mice with telencephalon-specific Rb deletions. We examined the role of Rb in neuronal specification and migration of diverse neuronal populations. Although layer specification occurred at the appropriate time in Rb mutants, migration of early-born cortical neurons was perturbed. Consistent with defects in radial migration, neuronal cell death in Rb mutants specifically affected Cajal-Retzius neurons. In the ventral telencephalon, although calbindin- and Lhx6-expressing cortical neurons were generated at embryonic day 12.5, their tangential migration into the neocortex was dramatically and specifically reduced in the mutant marginal zone. Cell transplantation assays revealed that defects in tangential migration arose owing to a cell-autonomous loss of Rb in migrating interneurons and not because of a defective cortical environment. These results revealed a cell-autonomous role for Rb in regulating the tangential migration of cortical interneurons. Taken together, we reveal a novel requirement for the cell cycle protein, Rb, in the regulation of neuronal migration.
精确的细胞周期调控对于神经系统发育至关重要。为了评估细胞周期调节因子视网膜母细胞瘤(Rb)蛋白在前脑发育中的作用,我们研究了端脑特异性Rb缺失的小鼠。我们研究了Rb在不同神经元群体的神经元特化和迁移中的作用。尽管在Rb突变体中各层的特化在适当时间发生,但早期生成的皮质神经元的迁移受到干扰。与放射状迁移缺陷一致,Rb突变体中的神经元细胞死亡特异性地影响了Cajal-Retzius神经元。在腹侧端脑中,尽管在胚胎第12.5天产生了表达钙结合蛋白和Lhx6的皮质神经元,但它们向新皮质的切向迁移在突变体边缘区显著且特异性地减少。细胞移植实验表明,切向迁移缺陷是由于迁移的中间神经元中Rb的细胞自主缺失,而非皮质环境缺陷所致。这些结果揭示了Rb在调节皮质中间神经元切向迁移中的细胞自主作用。综上所述,我们揭示了细胞周期蛋白Rb在神经元迁移调节中的新需求。