Program in Developmental and Stem Cell Biology, Hospital for Sick Children Research Institute, MARS Building, Toronto Medical Discovery Tower, Toronto, ON M5G 1L7, Canada.
Development. 2010 Feb;137(3):395-403. doi: 10.1242/dev.038828.
The mouse blastocyst and stem cells derived from its tissue lineages provide a unique genetic system for examining the establishment and loss of pluripotency. The transcription factor Cdx2 plays a central role by repressing pluripotency genes, such as Oct4, and promoting extraembryonic trophoblast fate at the blastocyst stage. However, genetic evidence has suggested that Cdx2 does not work alone in the trophoblast lineage. We have used bioinformatic and functional genomic strategies to identify the transcription factor Gata3 as a trophoblast factor. We show Gata3 to be capable of inducing trophoblast fate in embryonic stem cells and driving trophoblast differentiation in trophoblast stem cells. In addition, Cdx2 is not required for Gata3-induced expression of a subset of trophoblast genes in embryonic stem cells. We show that Gata3 is coexpressed with Cdx2 in the blastocyst, but this does not depend on Cdx2. In the embryo, expression of Gata3, like that of Cdx2, depends on Tead4, and the expression of both factors becomes restricted to trophoblast by a mechanism that does not initially rely on Oct4. These observations suggest that Gata3 and Cdx2 can act in parallel pathways downstream of Tead4 to induce the expression of common and independent targets in the trophoblast lineage, whereas Oct4 is required for continued repression of trophoblast fate in the embryonic lineage.
鼠胚泡和由其组织谱系衍生的干细胞为研究多能性的建立和丧失提供了一个独特的遗传系统。转录因子 Cdx2 通过抑制多能性基因(如 Oct4)和促进胚泡阶段的胚胎外滋养层命运来发挥核心作用。然而,遗传证据表明,Cdx2 在滋养层谱系中并非单独起作用。我们使用生物信息学和功能基因组策略鉴定出转录因子 Gata3 是一种滋养层因子。我们表明 Gata3 能够在胚胎干细胞中诱导滋养层命运,并在滋养层干细胞中驱动滋养层分化。此外,Gata3 诱导胚胎干细胞中一组滋养层基因的表达并不需要 Cdx2。我们表明 Gata3 在胚泡中与 Cdx2 共表达,但这并不依赖于 Cdx2。在胚胎中,Gata3 的表达与 Cdx2 一样依赖于 Tead4,并且这两种因子的表达都通过一种最初不依赖于 Oct4 的机制被限制在滋养层中。这些观察结果表明,Gata3 和 Cdx2 可以在 Tead4 的下游平行途径中起作用,以诱导滋养层谱系中共同和独立靶标的表达,而 Oct4 是胚胎谱系中持续抑制滋养层命运所必需的。