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Bmp 信号及其正反馈回路在脊索动物早期细胞命运演化中的重要作用。

Essential role of Bmp signaling and its positive feedback loop in the early cell fate evolution of chordates.

机构信息

Institute of Molecular Genetics, Videnska 1083, 142 20 Prague 4, Czech Republic.

出版信息

Dev Biol. 2013 Oct 15;382(2):538-54. doi: 10.1016/j.ydbio.2013.07.021. Epub 2013 Aug 7.

Abstract

In chordates, early separation of cell fate domains occurs prior to the final specification of ectoderm to neural and non-neural as well as mesoderm to dorsal and ventral during development. Maintaining such division with the establishment of an exact border between the domains is required for the formation of highly differentiated structures such as neural tube and notochord. We hypothesized that the key condition for efficient cell fate separation in a chordate embryo is the presence of a positive feedback loop for Bmp signaling within the gene regulatory network (GRN), underlying early axial patterning. Here, we therefore investigated the role of Bmp signaling in axial cell fate determination in amphioxus, the basal chordate possessing a centralized nervous system. Pharmacological inhibition of Bmp signaling induces dorsalization of amphioxus embryos and expansion of neural plate markers, which is consistent with an ancestral role of Bmp signaling in chordate axial patterning and neural plate formation. Furthermore, we provided evidence for the presence of the positive feedback loop within the Bmp signaling network of amphioxus. Using mRNA microinjections we found that, in contrast to vertebrate Vent genes, which promote the expression of Bmp4, amphioxus Vent1 is likely not responsible for activation of cephalochordate ortholog Bmp2/4. Cis-regulatory analysis of amphioxus Bmp2/4, Admp and Chordin promoters in medaka embryos revealed remarkable conservation of the gene regulatory information between vertebrates and basal chordates. Our data suggest that emergence of a positive feedback loop within the Bmp signaling network may represent a key molecular event in the evolutionary history of the chordate cell fate determination.

摘要

在脊索动物中,细胞命运域的早期分离发生在最终将外胚层特化为神经和非神经以及中胚层特化为背侧和腹侧之前。在发育过程中,维持这种分裂并在域之间建立精确的边界对于形成高度分化的结构(如神经管和脊索)是必需的。我们假设,在脊索动物胚胎中实现有效细胞命运分离的关键条件是 Bmp 信号转导在基因调控网络(GRN)内存在正反馈回路,这是早期轴向模式形成的基础。因此,在这里,我们研究了 Bmp 信号在文昌鱼(具有集中神经系统的基础脊索动物)的轴向细胞命运决定中的作用。Bmp 信号转导的药理学抑制诱导文昌鱼胚胎的背侧化和神经板标记物的扩展,这与 Bmp 信号在脊索动物轴向模式形成和神经板形成中的古老作用一致。此外,我们提供了文昌鱼 Bmp 信号网络内存在正反馈回路的证据。通过 mRNA 微注射,我们发现,与脊椎动物 Vent 基因促进 Bmp4 的表达相反,文昌鱼 Vent1 可能不负责激活头索动物同源物 Bmp2/4。文昌鱼 Bmp2/4、Admp 和 Chordin 启动子在斑马鱼胚胎中的顺式调控分析显示,脊椎动物和基础脊索动物之间的基因调控信息具有显著的保守性。我们的数据表明,Bmp 信号转导网络内正反馈回路的出现可能代表了脊索动物细胞命运决定的进化历史中的一个关键分子事件。

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