Department of Cell and Developmental Biology, Max Planck Institute for Molecular Biomedicine, Röntgenstrasse 20, 48149 Münster, Germany.
Development. 2010 Dec;137(24):4159-69. doi: 10.1242/dev.056630.
The separation of the first two lineages - trophectoderm (TE) and inner cell mass (ICM) - is a crucial event in the development of the early embryo. The ICM, which constitutes the pluripotent founder cell population, develops into the embryo proper, whereas the TE, which comprises the surrounding outer layer, supports the development of the ICM before and after implantation. Cdx2, the first transcription factor expressed specifically in the developing TE, is crucial for the differentiation of cells into the TE, as lack of zygotic Cdx2 expression leads to a failure of embryos to hatch and implant into the uterus. However, speculation exists as to whether maternal Cdx2 is required for initiation of TE lineage separation. Here, we show that effective elimination of both maternal and zygotic Cdx2 transcripts by an RNA interference approach resulted in failure of embryo hatching and implantation, but the developing blastocysts exhibited normal gross morphology, indicating that TE differentiation had been initiated. Expression of keratin 8, a marker for differentiated TE, further confirmed the identity of the TE lineage in Cdx2-deficient embryos. However, these embryos exhibited low mitochondrial activity and abnormal ultrastructure, indicating that Cdx2 plays a key role in the regulation of TE function. Furthermore, we found that embryonic compaction does not act as a 'switch' regulator to turn on Cdx2 expression. Our results clearly demonstrate that neither maternal nor zygotic Cdx2 transcripts direct the initiation of ICM/TE lineage separation.
第一个两个谱系的分离——滋养外胚层(TE)和内细胞团(ICM)——是早期胚胎发育的一个关键事件。ICM 构成多能祖细胞群体,发育成胚胎本身,而 TE 构成周围的外层,在植入前和植入后支持 ICM 的发育。Cdx2 是第一个在发育中的 TE 中特异性表达的转录因子,对于细胞分化成 TE 至关重要,因为缺乏合子 Cdx2 表达会导致胚胎无法孵化并植入子宫。然而,人们推测母体 Cdx2 是否需要启动 TE 谱系分离。在这里,我们通过 RNA 干扰方法显示,有效消除母体和合子 Cdx2 转录本导致胚胎孵化和植入失败,但发育中的囊胚表现出正常的大体形态,表明 TE 分化已经开始。角蛋白 8 的表达,一种分化的 TE 的标志物,进一步证实了 Cdx2 缺陷胚胎中 TE 谱系的身份。然而,这些胚胎表现出低线粒体活性和异常的超微结构,表明 Cdx2 在 TE 功能的调节中起着关键作用。此外,我们发现胚胎致密化不作为开启 Cdx2 表达的“开关”调节因子。我们的结果清楚地表明,无论是母体还是合子 Cdx2 转录本都不能直接启动 ICM/TE 谱系分离。