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对Foxa2突变小鼠胚胎的微阵列分析揭示了原肠胚组织者及其衍生物的新基因表达和诱导作用。

Microarray analysis of Foxa2 mutant mouse embryos reveals novel gene expression and inductive roles for the gastrula organizer and its derivatives.

作者信息

Tamplin Owen J, Kinzel Doris, Cox Brian J, Bell Christine E, Rossant Janet, Lickert Heiko

机构信息

Program in Developmental and Stem Cell Biology, Research Institute, The Hospital for Sick Children, 555 University Avenue, Toronto, Ontario, M5G 1X8, Canada.

出版信息

BMC Genomics. 2008 Oct 30;9:511. doi: 10.1186/1471-2164-9-511.

Abstract

BACKGROUND

The Spemann/Mangold organizer is a transient tissue critical for patterning the gastrula stage vertebrate embryo and formation of the three germ layers. Despite its important role during development, there are still relatively few genes with specific expression in the organizer and its derivatives. Foxa2 is a forkhead transcription factor that is absolutely required for formation of the mammalian equivalent of the organizer, the node, the axial mesoderm and the definitive endoderm (DE). However, the targets of Foxa2 during embryogenesis, and the molecular impact of organizer loss on the gastrula embryo, have not been well defined.

RESULTS

To identify genes specific to the Spemann/Mangold organizer, we performed a microarray-based screen that compared wild-type and Foxa2 mutant embryos at late gastrulation stage (E7.5). We could detect genes that were consistently down-regulated in replicate pools of mutant embryos versus wild-type, and these included a number of known node and DE markers. We selected 314 genes without previously published data at E7.5 and screened for expression by whole mount in situ hybridization. We identified 10 novel expression patterns in the node and 5 in the definitive endoderm. We also found significant reduction of markers expressed in secondary tissues that require interaction with the organizer and its derivatives, such as cardiac mesoderm, vasculature, primitive streak, and anterior neuroectoderm.

CONCLUSION

The genes identified in this screen represent novel Spemann/Mangold organizer genes as well as potential Foxa2 targets. Further investigation will be needed to define these genes as novel developmental regulatory factors involved in organizer formation and function. We have placed these genes in a Foxa2-dependent genetic regulatory network and we hypothesize how Foxa2 may regulate a molecular program of Spemann/Mangold organizer development. We have also shown how early loss of the organizer and its inductive properties in an otherwise normal embryo, impacts on the molecular profile of surrounding tissues.

摘要

背景

施佩曼/曼戈尔德组织者是一种短暂存在的组织,对于原肠胚期脊椎动物胚胎的模式形成以及三个胚层的形成至关重要。尽管它在发育过程中发挥着重要作用,但在组织者及其衍生物中具有特异性表达的基因仍然相对较少。Foxa2是一种叉头转录因子,对于哺乳动物中相当于组织者的结构——原结、轴向中胚层和定形内胚层(DE)的形成绝对必要。然而,Foxa2在胚胎发生过程中的靶标,以及组织者缺失对原肠胚胚胎的分子影响,尚未得到很好的界定。

结果

为了鉴定施佩曼/曼戈尔德组织者特有的基因,我们进行了一项基于微阵列的筛选,比较了原肠胚晚期(E7.5)的野生型和Foxa2突变体胚胎。我们能够检测到在突变体胚胎的重复样本池中相对于野生型持续下调的基因,这些基因包括一些已知的原结和DE标记物。我们选择了314个在E7.5时尚未发表相关数据的基因,并通过全胚胎原位杂交筛选其表达情况。我们在原结中鉴定出10种新的表达模式,在定形内胚层中鉴定出5种。我们还发现,在需要与组织者及其衍生物相互作用的次生组织中表达的标记物显著减少,如心脏中胚层、脉管系统、原条和前神经外胚层。

结论

在本次筛选中鉴定出的基因代表了新的施佩曼/曼戈尔德组织者基因以及潜在的Foxa2靶标。需要进一步研究以将这些基因定义为参与组织者形成和功能的新型发育调节因子。我们已将这些基因置于一个依赖Foxa2的遗传调控网络中,并推测了Foxa2可能如何调节施佩曼/曼戈尔德组织者发育的分子程序。我们还展示了在一个原本正常的胚胎中组织者及其诱导特性的早期缺失如何影响周围组织的分子特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e53/2605479/6e5bae5590ef/1471-2164-9-511-1.jpg

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