Fedtsova Natalia, Perris Roberto, Turner Eric E
Department of Psychiatry, University of California, San Diego and San Diego VA Medical Center, La Jolla, CA 92093-0603, USA.
Dev Biol. 2003 Sep 15;261(2):456-69. doi: 10.1016/s0012-1606(03)00316-6.
The trigeminal ganglia differentiate in part from specialized ectodermal structures in the embryonic head termed the trigeminal placodes. However, the signals which govern the migration of trigeminal precursors and the final morphology of the ganglia are poorly defined. Here, we show that notochord or floor plate tissue can induce the formation of ectopic sensory ganglia adjacent to the developing dorsal mesencephalon. Neurons within these ganglia coexpress the transcription factors Brn3a and Islet, which together characterize primary sensory neurons throughout the developing embryo. The ectopic ganglia originate from Pax3-expressing regions of the surface ectoderm that normally contribute to the ophthalmic trigeminal (op5), and can only be induced at developmental stages during which op5 precursors are present in the mesencephalic region. The migration of trigeminal precursors is also blocked by a local source of recombinant Shh, while in mouse embryos lacking Shh, these cells continue to migrate until they fuse into a single ganglion at the ventral midline. Together, these results suggest that Shh acts to arrest the migration of sensory precursors rather than to induce sensory neurons de novo. Consistent with this hypothesis, Shh induces the expression of the proteoglycan PG-M/versican in the cranial mesoderm, which has been previously implicated in the regulation of the movement of sensory neural precursors.
三叉神经节部分由胚胎头部称为三叉神经板的特化外胚层结构分化而来。然而,调控三叉神经前体细胞迁移及神经节最终形态的信号目前仍不清楚。在此,我们发现脊索或底板组织能够诱导在发育中的中脑背侧附近形成异位感觉神经节。这些神经节内的神经元共同表达转录因子Brn3a和Islet,这两种因子共同表征了整个发育胚胎中的初级感觉神经元。异位神经节起源于表面外胚层中表达Pax3的区域,该区域通常对眼三叉神经(op5)有贡献,并且仅能在op5前体细胞存在于中脑区域的发育阶段被诱导形成。三叉神经前体细胞的迁移也会被局部来源的重组Shh所阻断,而在缺乏Shh的小鼠胚胎中,这些细胞会继续迁移,直到它们在腹侧中线融合成单个神经节。这些结果共同表明,Shh的作用是阻止感觉前体细胞的迁移,而不是从头诱导感觉神经元的形成。与这一假设一致的是,Shh诱导颅中胚层中蛋白聚糖PG-M/versican的表达,此前已有研究表明该蛋白聚糖参与感觉神经前体细胞运动的调控。