Ajioka Itsuki, Nakajima Kazunori
Department of Anatomy, Keio University School of Medicine, 35 Shinanomachi, Shinjuku-ku, Tokyo 160-8582, Japan.
Eur J Neurosci. 2005 Jul;22(2):331-42. doi: 10.1111/j.1460-9568.2005.04214.x.
Cerebral cortical neurons form a six-layered structure in which their position depends on their birth date. This developmental process requires the presence of Reelin, which is secreted by Cajal-Retzius cells in the cortical marginal zone (MZ). However, it is still unclear whether the migration from the ventricular zone (VZ) to beneath the MZ is essential for the neurons to segregate into layers. Previous transplantation studies of ferret cerebral cortical neurons suggested that their ultimate laminar fate is, at least to some extent, determined in the VZ but it is unknown how 'laminar fate' eventually positions cells in a specific layer. To explore the segregation properties of mouse cortical cells that have not yet arrived beneath the MZ, embryonic day (E)16 VZ and intermediate zone (IMZ) cells were dissociated and allowed to reaggregate for 1-4 days in vitro. The results suggested that the migrating neurons in the IMZ at E16 preferentially located near the centre of the aggregates, more than did the proliferative cells from the VZ. The birth-date labelling followed by the dissociation-reaggregation culture suggested that the segregation properties of the E16 IMZ was characteristic of the E14-born cells, which were migrating in the IMZ at E16, but they were not general properties of migrating IMZ cells. This birth-date-dependent segregation mechanism was also observed in the Reelin signalling-deficient yotari cells. These findings suggest that cortical neurons acquire a birth-date-dependent segregation mechanism before their somas reach the MZ.
大脑皮质神经元形成六层结构,其位置取决于它们的出生日期。这一发育过程需要Reelin的存在,Reelin由皮质边缘区(MZ)的Cajal-Retzius细胞分泌。然而,从脑室区(VZ)迁移到MZ下方对于神经元分层是否至关重要仍不清楚。先前对雪貂大脑皮质神经元的移植研究表明,它们最终的层状命运至少在一定程度上是在VZ中决定的,但尚不清楚“层状命运”最终如何将细胞定位在特定层中。为了探究尚未到达MZ下方的小鼠皮质细胞的分离特性,将胚胎第16天(E16)的VZ和中间区(IMZ)细胞解离,并在体外使其重新聚集1-4天。结果表明,E16时IMZ中的迁移神经元比VZ中的增殖细胞更倾向于位于聚集体的中心附近。出生时间标记后进行解离-重新聚集培养表明,E16时IMZ的分离特性是E14出生的细胞的特征,这些细胞在E16时在IMZ中迁移,但它们不是迁移的IMZ细胞的普遍特性。在缺乏Reelin信号的yotari细胞中也观察到了这种依赖出生时间的分离机制。这些发现表明,皮质神经元在其胞体到达MZ之前就获得了一种依赖出生时间的分离机制。