蜗牛通过抑制 microRNA-200 家族促进 Flk1(+)内皮细胞的细胞自主生成。

Snail promotes the cell-autonomous generation of Flk1(+) endothelial cells through the repression of the microRNA-200 family.

机构信息

Department of Pathology and Immunology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.

出版信息

Stem Cells Dev. 2012 Jan 20;21(2):167-76. doi: 10.1089/scd.2011.0194. Epub 2011 Oct 18.

Abstract

Expression of the transcription factor Snail is required for normal vasculogenesis in the developing mouse embryo. In addition, tumors expressing Snail have been associated with a more malignant phenotype, with both increased invasive properties and angiogenesis. Although the relationship between Snail and vasculogenesis has been noted, no mechanistic analysis has been elucidated. Here, we show that in addition to inducing an epithelial mesenchymal transition, Snail promotes the cell-autonomous induction of Flk1(+) endothelial cells in an early subset of differentiating mouse embryonic stem (ES) cells. Cells that become Flk1+ in response to Snail have a transcriptional profile specific to Gata6+primitive endoderm, but not the early Nanog+epiblast. We further show that Snail's ability to promote Flk1(+) endothelium depends on fibroblast growth factor signaling as well as the repression of the microRNA-200 (miR-200) family, which directly targets the 3' UTRs of Flk1 and Ets1. Together, our results show that Snail is capable of inducing Flk1+ lineage commitment in a subset of differentiating ES cells through the down-regulation of the miR-200 family. We hypothesize that this mechanism of Snail-induced vasculogenesis may be conserved in both the early developing embryo and malignant cancers.

摘要

转录因子 Snail 的表达对于发育中的小鼠胚胎正常血管生成是必需的。此外,表达 Snail 的肿瘤与更恶性的表型相关,具有更高的侵袭性和血管生成能力。尽管已经注意到 Snail 与血管生成之间的关系,但尚未阐明其机制分析。在这里,我们表明,Snail 除了诱导上皮间质转化外,还促进了早期分化的小鼠胚胎干细胞(ES 细胞)中 Flk1(+)内皮细胞的自主诱导。对 Snail 反应而成为 Flk1+的细胞具有与 Gata6+原始内胚层特异性的转录谱,但与早期 Nanog+上胚层不同。我们进一步表明,Snail 促进 Flk1(+)内皮的能力依赖于成纤维细胞生长因子信号以及 microRNA-200(miR-200)家族的抑制,miR-200 家族直接靶向 Flk1 和 Ets1 的 3'UTR。总之,我们的结果表明,Snail 通过下调 miR-200 家族,能够在分化的 ES 细胞的亚群中诱导 Flk1+谱系的决定。我们假设,这种 Snail 诱导的血管生成机制可能在早期胚胎发育和恶性肿瘤中都得到保守。

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