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调控微小 RNA 网络在牛囊胚发育中的鉴定。

Regulatory microRNA network identification in bovine blastocyst development.

机构信息

Department of Nutrition, Genetics and Ethology, Ghent University, Merelbeke, Belgium.

出版信息

Stem Cells Dev. 2013 Jul 1;22(13):1907-20. doi: 10.1089/scd.2012.0708. Epub 2013 Mar 15.

Abstract

Mammalian blastocyst formation is characterized by two lineage segregations resulting in the formation of the trophectoderm, the hypoblast, and the epiblast cell lineages. Cell fate determination during these early lineage segregations is associated with changes in the expression of specific transcription factors. In addition to the transcription factor-based control, it has become clear that also microRNAs (miRNAs) play an important role in the post-transcriptional regulation of pluripotency and differentiation. To elucidate the role of miRNAs in early lineage segregation, we compared the miRNA expression in early bovine blastocysts with the more advanced stage of hatched blastocysts. Reverse transcription-quantitative PCR-based miRNA expression profiling revealed eight upregulated miRNAs (miR-127, miR-130a, miR-155, miR-196a, miR-203, miR-28, miR-29c, and miR-376a) and four downregulated miRNAs (miR-135a, miR-218, miR-335, and miR-449b) in hatched blastocysts. Through an integrative analysis of matching miRNA and mRNA expression data, candidate miRNA-mRNA interaction pairs were prioritized for validation. Using an in vitro luciferase reporter assay, we confirmed a direct interaction between miR-218 and CDH2, miR-218 and NANOG, and miR-449b and NOTCH1. By interfering with the FGF signaling pathway, we found functional evidence that miR-218, mainly expressed in the inner cell mass, regulates the NANOG expression in the bovine blastocyst in response to FGF signaling. The results of this study expand our knowledge about the miRNA signature of the bovine blastocyst and of the interactions between miRNAs and cell fate regulating transcription factors.

摘要

哺乳动物囊胚的形成特征是两次谱系分离,导致滋养外胚层、下胚层和内胚层细胞谱系的形成。在这些早期谱系分离过程中,细胞命运的决定与特定转录因子表达的变化有关。除了转录因子的控制之外,miRNAs(microRNAs)在多能性和分化的转录后调控中也起着重要作用。为了阐明 miRNAs 在早期谱系分离中的作用,我们比较了早期牛囊胚和孵化囊胚中更高级阶段的 miRNA 表达。基于反转录定量 PCR 的 miRNA 表达谱分析显示,在孵化囊胚中上调了 8 个 miRNAs(miR-127、miR-130a、miR-155、miR-196a、miR-203、miR-28、miR-29c 和 miR-376a)和下调了 4 个 miRNAs(miR-135a、miR-218、miR-335 和 miR-449b)。通过对匹配的 miRNA 和 mRNA 表达数据进行综合分析,优先选择候选 miRNA-mRNA 相互作用对进行验证。使用体外荧光素酶报告基因检测,我们证实了 miR-218 与 CDH2、miR-218 与 NANOG 以及 miR-449b 与 NOTCH1 之间存在直接相互作用。通过干扰 FGF 信号通路,我们发现了功能证据,表明主要在内细胞团中表达的 miR-218 调节牛囊胚中 NANOG 的表达,以响应 FGF 信号。这项研究的结果扩展了我们对牛囊胚 miRNA 特征和 miRNA 与调节细胞命运的转录因子之间相互作用的认识。

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本文引用的文献

3
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4
Notch signaling: simplicity in design, versatility in function.
Development. 2011 Sep;138(17):3593-612. doi: 10.1242/dev.063610.
5
Differential apoptotic staining of mammalian blastocysts based on double immunofluorescent CDX2 and active caspase-3 staining.
Anal Biochem. 2011 Sep 15;416(2):228-30. doi: 10.1016/j.ab.2011.05.033. Epub 2011 May 27.
7
Control of vertebrate multiciliogenesis by miR-449 through direct repression of the Delta/Notch pathway.
Nat Cell Biol. 2011 Jun;13(6):693-9. doi: 10.1038/ncb2241. Epub 2011 May 22.
10
The miR-17-92 microRNA cluster regulates multiple components of the TGF-β pathway in neuroblastoma.
Mol Cell. 2010 Dec 10;40(5):762-73. doi: 10.1016/j.molcel.2010.11.038.

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