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早期非洲爪蟾发育过程中 MEF2D 对中胚层基因的转录调控。

Transcriptional regulation of mesoderm genes by MEF2D during early Xenopus development.

机构信息

Department of Biochemistry, Faculty of Medicine, Technion-Israel Institute of Technology, Haifa, Israel.

出版信息

PLoS One. 2013 Jul 19;8(7):e69693. doi: 10.1371/journal.pone.0069693. Print 2013.

Abstract

In Xenopus, specification of the three germ layers is one of the earliest developmental decisions occurring prior to gastrulation. The maternally-expressed vegetally-localized transcription factor VegT has a central role in cell autonomous specification of endoderm and in the generation of mesoderm-inducing signals. Yet, marginally-expressed transcription factors that cooperate with mesoderm-inducing signals are less investigated. Here we report that the transcription factors MEF2A and MEF2D are expressed in the animal hemisphere before mid-blastula transition. At the initiation of zygotic transcription, expression of MEF2D expands into the marginal region that gives rise to mesoderm. Knockdown of MEF2D delayed gastrulation movements, prevented embryo elongation at the subsequent tailbud stage and caused severe defects in axial tissues. At the molecular level, MEF2D knockdown reduced the expression of genes involved in mesoderm formation and patterning. We also report that MEF2D functions with FGF signaling in a positive feedback loop; each augments the expression of the other in the marginal region and both are necessary for mesodermal gene expression. One target of MEF2D is the Nodal-related 1 gene (Xnr1) that mediates some of MEF2D mesodermal activities. Chromatin immunoprecipitation analysis revealed that MEF2D associates with transcriptional regulatory sequences of the Xnr1 gene. Several MEF2 binding sites within the proximal promoter region of Xnr1 were identified by their in vitro association with MEF2D protein. The same promoter region was necessary but not sufficient to mediate MEF2D activity in a reporter gene assay. In sum, our results indicate that the MEF2D protein is a key transcription factor in the marginal zone acting in a positive feedback loop with FGF signaling that promotes mesoderm specification at late blastula stages.

摘要

在非洲爪蟾中,三个胚层的特化是发生在原肠胚形成之前的最早的发育决定之一。母体表达的植物区域定位的转录因子 VegT 在细胞自主特化内胚层和生成中胚层诱导信号方面起着核心作用。然而,与中胚层诱导信号合作的边缘表达的转录因子则较少被研究。在这里,我们报告说,转录因子 MEF2A 和 MEF2D 在中胚层形成之前的中期囊胚转换时在动物半球中表达。在合子转录开始时,MEF2D 的表达扩展到产生中胚层的边缘区域。MEF2D 的敲低延迟了原肠胚运动,阻止了随后的尾芽阶段胚胎的伸长,并导致轴向组织的严重缺陷。在分子水平上,MEF2D 的敲低降低了参与中胚层形成和模式形成的基因的表达。我们还报告说,MEF2D 与 FGF 信号在正反馈环中起作用;每个在边缘区域增强另一个的表达,两者对于中胚层基因表达都是必需的。MEF2D 的一个靶标是 Nodal 相关 1 基因(Xnr1),它介导了 MEF2D 的一些中胚层活性。染色质免疫沉淀分析显示 MEF2D 与 Xnr1 基因的转录调节序列结合。通过与 MEF2D 蛋白的体外关联,在 Xnr1 基因的近端启动子区域中鉴定出几个 MEF2 结合位点。相同的启动子区域对于在报告基因测定中介导 MEF2D 活性是必要的,但不是充分的。总之,我们的结果表明,MEF2D 蛋白是边缘区的关键转录因子,与 FGF 信号一起在正反馈环中起作用,促进晚期囊胚阶段的中胚层特化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aad0/3716644/5459b5e85966/pone.0069693.g001.jpg

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