Division of Biology, California Institute of Technology, 1200 E. California Blvd., MC139-74, Pasadena, CA 91125, USA.
Dev Biol. 2013 Feb 1;374(1):1-11. doi: 10.1016/j.ydbio.2012.11.035. Epub 2012 Dec 8.
Neural crest cells migrate extensively and contribute to diverse derivatives, including the craniofacial skeleton, peripheral neurons and glia, and pigment cells. Although several transgenic lines label neural crest subpopulations, few are suited for studying early events in neural crest development. Here, we present a zebrafish gene/protein trap line gt(foxd3-citrine)(ct110a) that expresses a Citrine fusion protein with FoxD3, a transcription factor expressed in premigratory and migrating neural crest cells. In this novel line, citrine expression exactly parallels endogenous foxd3 expression. High-resolution time-lapse imaging reveals the dynamic phases of precursor and migratory neural crest cell movements from the neural keel stage to times of active cell migration. In addition, Cre-recombination produces a variant line FoxD3-mCherry-pA whose homozygosis generates a FoxD3 mutant. Taking advantage of the endogenously regulated expression of FoxD3-mCherry fusion protein, we directly assess early effects of FoxD3 loss-of-function on specification and morphogenesis of dorsal root ganglia, craniofacial skeleton and melanophores. These novel lines provide new insights and useful new tools for studying specification, migration and differentiation of neural crest cells.
神经嵴细胞广泛迁移,并对多种衍生物做出贡献,包括颅面骨骼、周围神经元和神经胶质细胞以及色素细胞。尽管有几个转基因系标记了神经嵴亚群,但很少有适合研究神经嵴发育早期事件的。在这里,我们介绍了一种斑马鱼基因/蛋白捕获系 gt(foxd3-citrine)(ct110a),该系表达一种 Citrine 融合蛋白与 FoxD3,FoxD3 是一种在迁移前和迁移中的神经嵴细胞中表达的转录因子。在这个新的系中,Citrine 的表达与内源性 foxd3 表达完全一致。高分辨率延时成像揭示了从神经龙骨阶段到活跃细胞迁移时前体和迁移性神经嵴细胞运动的动态阶段。此外,Cre 重组产生了一个变体线 FoxD3-mCherry-pA,其纯合子产生 FoxD3 突变体。利用 FoxD3-mCherry 融合蛋白的内源性调控表达,我们直接评估了 FoxD3 功能丧失对背根神经节、颅面骨骼和黑色素细胞的特异性和形态发生的早期影响。这些新的系为研究神经嵴细胞的特异性、迁移和分化提供了新的见解和有用的新工具。