Department of Neurological Surgery, University of Washington, Seattle, Washington 98101, USA.
J Neurosci. 2013 Feb 27;33(9):4165-80. doi: 10.1523/JNEUROSCI.4185-12.2013.
The dentate gyrus (DG) is a unique cortical region whose protracted development spans the embryonic and early postnatal periods. DG development involves large-scale reorganization of progenitor cell populations, ultimately leading to the establishment of the subgranular zone neurogenic niche. In the developing DG, the T-box transcription factor Tbr2 is expressed in both Cajal-Retzius cells derived from the cortical hem that guide migration of progenitors and neurons to the DG, and intermediate neuronal progenitors born in the dentate neuroepithelium that give rise to granule neurons. Here we show that in mice Tbr2 is required for proper migration of Cajal-Retzius cells to the DG; and, in the absence of Tbr2, formation of the hippocampal fissure is abnormal, leading to aberrant development of the transhilar radial glial scaffold and impaired migration of progenitors and neuroblasts to the developing DG. Furthermore, loss of Tbr2 results in decreased expression of Cxcr4 in migrating cells, leading to a premature burst of granule neurogenesis during early embryonic development accompanied by increased cell death in mutant animals. Formation of the transient subpial neurogenic zone was abnormal in Tbr2 conditional knock-outs, and the stem cell population in the DG was depleted before proper establishment of the subgranular zone. These studies indicate that Tbr2 is explicitly required for morphogenesis of the DG and participates in multiple aspects of the intricate developmental process of this structure.
齿状回(DG)是一个独特的皮质区域,其长期发育跨越胚胎期和早期产后期。DG 的发育涉及祖细胞群体的大规模重组,最终导致颗粒下区神经发生龛的建立。在发育中的 DG 中,T 盒转录因子 Tbr2 表达于源自皮质半球的 Cajal-Retzius 细胞中,这些细胞指导祖细胞和神经元迁移到 DG,并表达于齿状神经上皮中产生颗粒神经元的中间神经元祖细胞。在这里,我们表明在小鼠中 Tbr2 对于 Cajal-Retzius 细胞向 DG 的正确迁移是必需的;并且,在没有 Tbr2 的情况下,海马裂的形成是异常的,导致跨齿状放射状胶质支架的异常发育和祖细胞和神经母细胞向发育中的 DG 的迁移受损。此外,Tbr2 的缺失导致迁移细胞中 Cxcr4 的表达减少,导致早期胚胎发育期间颗粒神经发生的过早爆发,伴有突变动物中细胞死亡增加。Tbr2 条件性敲除小鼠中短暂的软脑膜神经发生区的形成异常,DG 中的干细胞群体在适当建立颗粒下区之前就被耗尽。这些研究表明,Tbr2 明确参与 DG 的形态发生,并参与该结构复杂发育过程的多个方面。