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在斑马鱼中,gata5、gata6、otx2 和 prdm1a 的进化保守核心在肠内胚层的形成中起作用。

An evolutionarily conserved kernel of gata5, gata6, otx2 and prdm1a operates in the formation of endoderm in zebrafish.

机构信息

Institute of Molecular and Genomic Medicine, National Health Research Institutes, Zhunan Town, Miaoli County 350, Taiwan, ROC.

出版信息

Dev Biol. 2011 Sep 15;357(2):541-57. doi: 10.1016/j.ydbio.2011.06.040. Epub 2011 Jul 1.


DOI:10.1016/j.ydbio.2011.06.040
PMID:21756893
Abstract

An evolutionarily conserved subcircuit (kernel) dedicated to a specific developmental function is found at the top of the gene regulatory networks (GRNs) hierarchy. Here we comprehensively demonstrate that a pan-deuterostome endoderm specification kernel exists in zebrafish. We analyzed interactions among gata5, gata6, otx2 and prdm1a using specific morpholino knockdowns and measured the gene expression profiles by quantitative real-time RT-PCR and in situ hybridization. The mRNA rescue experiment validated the specificity of the morpholino knockdown. We found that the interactions among gata5, gata6, otx2 and prdm1a determine the initial specification of the zebrafish endoderm. Although otx2 can activate both gata5 and gata6, and the prdm1a/krox homologue also activates some endoderm transcription factors, a feedback loop from Gata to otx2 and prdm1a is missing. Furthermore, we found the positive regulation between gata5 and gata6 to further lock-on the mesendoderm specification by the Gata family. Chromatin immunoprecipitation was used to further validate the recruitment of Otx2 to the gata5 and gata6 loci. Functional assays revealed that module B of gata6 and the basal promoter of gata5 drive the gene at the mesendoderm, and mutational analysis demonstrated that Otx2 and Gata5/6 contribute to reporter gene activation. This is the first direct evidence for evolutionarily conserved endoderm specification across echinoderms and vertebrates.

摘要

一个进化保守的亚回路(核心),专门用于特定的发育功能,位于基因调控网络(GRNs)层次结构的顶端。在这里,我们全面证明了泛脊索动物内胚层特化核心存在于斑马鱼中。我们使用特定的 morpholino 敲低分析了 gata5、gata6、otx2 和 prdm1a 之间的相互作用,并通过定量实时 RT-PCR 和原位杂交测量了基因表达谱。mRNA 挽救实验验证了 morpholino 敲低的特异性。我们发现 gata5、gata6、otx2 和 prdm1a 之间的相互作用决定了斑马鱼内胚层的初始特化。尽管 otx2 可以激活 gata5 和 gata6,并且 prdm1a/krox 同源物也激活一些内胚层转录因子,但 Gata 向 otx2 和 prdm1a 的反馈回路缺失。此外,我们发现 gata5 和 gata6 之间的正调控进一步通过 Gata 家族锁定中胚层的特化。染色质免疫沉淀用于进一步验证 Otx2 对 gata5 和 gata6 基因座的募集。功能测定揭示了 gata6 的模块 B 和 gata5 的基础启动子驱动中胚层基因,并且突变分析表明 Otx2 和 Gata5/6 有助于报告基因的激活。这是第一个跨棘皮动物和脊椎动物进化保守的内胚层特化的直接证据。

相似文献

[1]
An evolutionarily conserved kernel of gata5, gata6, otx2 and prdm1a operates in the formation of endoderm in zebrafish.

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