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一种新的转基因报告系揭示了 Wnt 依赖性的 Snai2 再表达和颅神经嵴分化在非洲爪蟾中。

A new transgenic reporter line reveals Wnt-dependent Snai2 re-expression and cranial neural crest differentiation in Xenopus.

机构信息

Department of Biology, West Virginia University, Morgantown, WV, 26506, USA.

Department of Clinical Laboratory, The Affiliated Hospital of KMUST, Medical School, Kunming University of Science and Technology, Kunming, 650032, China.

出版信息

Sci Rep. 2019 Aug 1;9(1):11191. doi: 10.1038/s41598-019-47665-9.

Abstract

During vertebrate embryogenesis, the cranial neural crest (CNC) forms at the neural plate border and subsequently migrates and differentiates into many types of cells. The transcription factor Snai2, which is induced by canonical Wnt signaling to be expressed in the early CNC, is pivotal for CNC induction and migration in Xenopus. However, snai2 expression is silenced during CNC migration, and its roles at later developmental stages remain unclear. We generated a transgenic X. tropicalis line that expresses enhanced green fluorescent protein (eGFP) driven by the snai2 promoter/enhancer, and observed eGFP expression not only in the pre-migratory and migrating CNC, but also the differentiating CNC. This transgenic line can be used directly to detect deficiencies in CNC development at various stages, including subtle perturbation of CNC differentiation. In situ hybridization and immunohistochemistry confirm that Snai2 is re-expressed in the differentiating CNC. Using a separate transgenic Wnt reporter line, we show that canonical Wnt signaling is also active in the differentiating CNC. Blocking Wnt signaling shortly after CNC migration causes reduced snai2 expression and impaired differentiation of CNC-derived head cartilage structures. These results suggest that Wnt signaling is required for snai2 re-expression and CNC differentiation.

摘要

在脊椎动物胚胎发生过程中,颅神经嵴(CNC)在神经板边界形成,随后迁移并分化为多种细胞。转录因子 Snai2 在早期 CNC 中被经典 Wnt 信号诱导表达,对于 CNC 的诱导和迁移至关重要。然而,在 CNC 迁移过程中 snai2 的表达被沉默,其在后期发育阶段的作用仍不清楚。我们生成了一种转基因 X. tropicalis 系,该系表达由 snai2 启动子/增强子驱动的增强型绿色荧光蛋白(eGFP),并观察到 eGFP 不仅在迁移前和迁移中的 CNC 中表达,而且在分化中的 CNC 中表达。这种转基因系可直接用于检测 CNC 发育的各个阶段的缺陷,包括 CNC 分化的细微扰动。原位杂交和免疫组织化学证实 Snai2 在分化中的 CNC 中重新表达。使用单独的转基因 Wnt 报告基因系,我们表明经典 Wnt 信号也在分化中的 CNC 中活跃。在 CNC 迁移后不久阻断 Wnt 信号会导致 snai2 表达减少和 CNC 衍生的头部软骨结构分化受损。这些结果表明 Wnt 信号对于 snai2 的重新表达和 CNC 的分化是必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cac0/6672020/ff8e959cefa2/41598_2019_47665_Fig1_HTML.jpg

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