Wu Chyong-Yi, Taneyhill Lisa A
Department of Animal and Avian Sciences, University of Maryland, College Park, Maryland.
Genesis. 2019 Jan;57(1):e23264. doi: 10.1002/dvg.23264. Epub 2018 Dec 24.
The cranial trigeminal ganglia play a vital role in the peripheral nervous system through their relay of sensory information from the vertebrate head to the brain. These ganglia are generated from the intermixing and coalescence of two distinct cell populations: cranial neural crest cells and placodal neurons. Trigeminal ganglion assembly requires the formation of cadherin-based adherens junctions within the neural crest cell and placodal neuron populations; however, the molecular composition of these adherens junctions is still unknown. Herein, we aimed to define the spatio-temporal expression pattern and function of Cadherin-7 during early chick trigeminal ganglion formation. Our data reveal that Cadherin-7 is expressed exclusively in migratory cranial neural crest cells and is absent from trigeminal neurons. Using molecular perturbation experiments, we demonstrate that modulation of Cadherin-7 in neural crest cells influences trigeminal ganglion assembly, including the organization of neural crest cells and placodal neurons within the ganglionic anlage. Moreover, alterations in Cadherin-7 levels lead to changes in the morphology of trigeminal neurons. Taken together, these findings provide additional insight into the role of cadherin-based adhesion in trigeminal ganglion formation, and, more broadly, the molecular mechanisms that orchestrate the cellular interactions essential for cranial gangliogenesis.
颅三叉神经节在周围神经系统中发挥着至关重要的作用,它将脊椎动物头部的感觉信息传递至大脑。这些神经节由两种不同的细胞群体混合并融合而成:颅神经嵴细胞和基板神经元。三叉神经节的组装需要在神经嵴细胞和基板神经元群体中形成基于钙黏蛋白的黏附连接;然而,这些黏附连接的分子组成仍然未知。在此,我们旨在确定钙黏蛋白 -7 在早期鸡胚三叉神经节形成过程中的时空表达模式及功能。我们的数据显示,钙黏蛋白 -7 仅在迁移的颅神经嵴细胞中表达,而在三叉神经元中不存在。通过分子干扰实验,我们证明神经嵴细胞中钙黏蛋白 -7 的调节会影响三叉神经节的组装,包括神经嵴细胞和基板神经元在神经节原基内的组织方式。此外,钙黏蛋白 -7 水平的改变会导致三叉神经元形态的变化。综上所述,这些发现为基于钙黏蛋白的黏附在三叉神经节形成中的作用,以及更广泛地为协调颅神经节发生所必需的细胞相互作用的分子机制提供了更多见解。