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转录因子 TCFAP2C/AP-2γ与 CDX2 合作维持滋养外胚层的形成。

The transcription factor TCFAP2C/AP-2gamma cooperates with CDX2 to maintain trophectoderm formation.

机构信息

Department of Developmental Pathology, Institute of Pathology, University of Bonn Medical School, Sigmund-Freud-Str. 25, Bonn D-53127, Germany.

出版信息

Mol Cell Biol. 2010 Jul;30(13):3310-20. doi: 10.1128/MCB.01215-09. Epub 2010 Apr 19.

Abstract

In mammals, cell lineage specification is established at the blastocyst stage. At this stage, transcription factor Cdx2 represses pluripotency genes, thus promoting extraembryonic trophoblast fate. Recently, transcription factor Gata3 was shown to act in a parallel pathway in promoting trophoblast cell fate, suggesting that there are more factors working in the trophoblast lineage. Here, we report that the transcription factor Tcfap2c is expressed at a high level in the trophectoderm and is able to induce trophoblast fate in embryonic stem cells. Trophoblast fate induced by Tcfap2c does not require Cdx2 and vice versa, suggesting that the molecules act in alternative pathways. However, both Tcfap2c and Cdx2 are required for the upregulation of Elf5, a marker of trophoblast stem cell maintenance, suggesting that both factors are required for stable trophoblast induction. Tcfap2c-induced trophoblast-like cells are stable in long-term culture, indicating that they are capable of self-renewal. Tcfap2c-controlled trophoblast maintenance involves the induction of Cdx2 and the repression of the pluripotency factor Nanog. Tcfap2c-induced trophoblast-like cells differentiate to trophoblast derivatives in vitro and contribute to the trophectoderm in blastocysts in vivo. Taken together, these observations suggest that Tcfap2c and Cdx2 cooperate to override the pluripotency program and establish the extraembryonic trophoblast maintenance program in murine embryos.

摘要

在哺乳动物中,细胞谱系的特化是在囊胚期建立的。在这个阶段,转录因子 Cdx2 抑制多能性基因,从而促进胚胎外滋养层命运。最近,转录因子 Gata3 被证明在促进滋养层细胞命运的平行途径中起作用,这表明有更多的因子在滋养层谱系中起作用。在这里,我们报告转录因子 Tcfap2c 在滋养外胚层中高表达,并能够在胚胎干细胞中诱导滋养层命运。Tcfap2c 诱导的滋养层命运不需要 Cdx2,反之亦然,这表明这些分子作用于替代途径。然而,Tcfap2c 和 Cdx2 都需要上调 Elf5,这是滋养层干细胞维持的标志物,这表明这两个因素都需要稳定的滋养层诱导。Tcfap2c 诱导的类滋养层细胞在长期培养中稳定,表明它们具有自我更新的能力。Tcfap2c 控制的滋养层维持涉及 Cdx2 的诱导和多能性因子 Nanog 的抑制。Tcfap2c 诱导的类滋养层细胞在体外分化为滋养层衍生物,并在体内胚胎中有助于滋养外胚层。综上所述,这些观察结果表明,Tcfap2c 和 Cdx2 合作以克服多能性程序,并在小鼠胚胎中建立胚胎外滋养层维持程序。

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