Shah Ankita, Taneyhill Lisa A
Department of Animal and Avian Sciences, University of Maryland, College Park, MD 20742, USA.
Department of Animal and Avian Sciences, University of Maryland, College Park, MD 20742, USA.
Gene Expr Patterns. 2015 May-Jul;18(1-2):21-8. doi: 10.1016/j.gep.2015.05.001. Epub 2015 May 11.
The cranial trigeminal and epibranchial ganglia are components of the peripheral nervous system that possess an important somatosensory role. These ganglia arise from the intermixing and coalescence of two different migratory cell types, neural crest cells and neurogenic placodes cells, and thus typify the phenomena of cell migration and intercellular interactions for their creation. The underlying molecular mechanisms of ganglia formation, however, are still poorly understood. To address this, we have analyzed the spatio-temporal expression profile of Annexin A6 during chick gangliogenesis, as Annexin proteins play important, conserved roles in ganglia development and physiology. We observe Annexin A6 protein in cranial neural crest cells prior to, during and after their emergence from the neural tube. Fully migratory cranial neural crest cells, however, are devoid of Annexin A6. Interestingly, we note Annexin A6 protein in trigeminal and epibranchial placode cells as these cells ingress from the ectoderm to initiate ganglia formation. This expression is also maintained in the sensory placodes later on when they coalesce with neural crest cells to assemble the cranial ganglia. These results suggest that the dynamic expression of Annexin A6 in various embryonic cell types may allow Annexin A6 to serve distinct functions throughout embryonic development.
颅三叉神经节和鳃上神经节是外周神经系统的组成部分,具有重要的躯体感觉作用。这些神经节由两种不同的迁移细胞类型,即神经嵴细胞和神经源性基板细胞混合并融合而成,因此它们的形成体现了细胞迁移和细胞间相互作用的现象。然而,神经节形成的潜在分子机制仍知之甚少。为了解决这个问题,我们分析了鸡神经节形成过程中膜联蛋白A6的时空表达谱,因为膜联蛋白在神经节发育和生理过程中发挥着重要的、保守的作用。我们在颅神经嵴细胞从神经管出现之前、期间和之后都观察到了膜联蛋白A6蛋白。然而,完全迁移的颅神经嵴细胞却没有膜联蛋白A6。有趣的是,当三叉神经节和鳃上神经节基板细胞从外胚层侵入以启动神经节形成时,我们在这些细胞中发现了膜联蛋白A6蛋白。当感觉基板与神经嵴细胞融合以组装颅神经节时,这种表达在感觉基板中也会持续存在。这些结果表明,膜联蛋白A6在各种胚胎细胞类型中的动态表达可能使膜联蛋白A6在整个胚胎发育过程中发挥不同的功能。