Chacon Jose, Rogers Crystal D
Department of Biology, School of Math and Science, California State University Northridge, Northridge, CA 91330, USA.
Department of Biology, School of Math and Science, California State University Northridge, Northridge, CA 91330, USA.
Gene Expr Patterns. 2019 Dec;34:119067. doi: 10.1016/j.gep.2019.119067. Epub 2019 Jul 29.
Neural crest cells are a transient stem-like cell population that forms in the dorsal neural tube of vertebrate embryos and then migrates to various locations to differentiate into diverse derivatives such as craniofacial bone, cartilage, and the enteric and peripheral nervous systems. The current dogma of neural crest cell development suggests that there is a specific hierarchical gene regulatory network (GRN) that controls the induction, specification, and differentiation of these cells at specific developmental times. Our lab has identified that a marker of differentiated neurons, Tubulin Beta-III (TUBB3), is expressed in premigratory neural crest cells. TUBB3 has previously been identified as a major constituent of microtubules and is required for the proper guidance and maintenance of axons during development. Using the model organism, Gallus gallus, we have characterized the spatiotemporal localization of TUBB3 in early stages of development. Here we show TUBB3 is expressed in the developing neural plate, is upregulated in the pre-migratory cranial neural crest prior to cell delamination and migration, and it is maintained or upregulated in neurons in later developmental stages. We believe that TUBB3 likely has a role in early neural crest formation and migration separate from its role in neurogenesis.
神经嵴细胞是一种短暂存在的类干细胞群体,在脊椎动物胚胎的背神经管中形成,然后迁移到不同位置,分化为多种衍生物,如颅面骨、软骨以及肠神经系统和周围神经系统。目前关于神经嵴细胞发育的主流观点认为,存在一个特定的分层基因调控网络(GRN),在特定发育时期控制这些细胞的诱导、特化和分化。我们实验室已确定,分化神经元的标志物微管蛋白β-III(TUBB3)在迁移前的神经嵴细胞中表达。TUBB3此前已被确定为微管的主要成分,并且在发育过程中对轴突的正确引导和维持是必需的。利用模式生物原鸡,我们已对TUBB3在发育早期的时空定位进行了表征。在此我们表明,TUBB3在发育中的神经板中表达,在细胞分层和迁移之前的迁移前颅神经嵴中上调,并且在后期发育阶段的神经元中维持或上调。我们认为,TUBB3可能在早期神经嵴形成和迁移中发挥作用,这与其在神经发生中的作用不同。