Beck-Cormier Sarah, Escande Marie, Souilhol Céline, Vandormael-Pournin Sandrine, Sourice Sophie, Pilet Paul, Babinet Charles, Cohen-Tannoudji Michel
Mouse Functional Genetics, Department of Developmental & Stem Cell Biology, Institut Pasteur, Paris, France; Centre National de la Recherche Scientifique, URA 2578, Institut Pasteur, Paris, France.
Mouse Functional Genetics, Department of Developmental & Stem Cell Biology, Institut Pasteur, Paris, France.
PLoS One. 2014 May 29;9(5):e98507. doi: 10.1371/journal.pone.0098507. eCollection 2014.
Maintenance of cell survival is essential for proper embryonic development. In the mouse, Notchless homolog 1 (Drosophila) (Nle1) is instrumental for survival of cells of the inner cell mass upon implantation. Here, we analyze the function of Nle1 after implantation using the Meox2(tm1(cre)Sor) mouse that expresses the Cre recombinase specifically in the epiblast at E5.5. First, we find that NLE1 function is required in epiblast cells, as Nle1-deficient cells are rapidly eliminated. In this report, we also show that the Meox2(Cre) transgene is active in specific tissues during organogenesis. In particular, we detect high Cre expression in the vertebral column, ribs, limbs and tailbud. We took advantage of this dynamic expression profile to analyze the effects of inducing mosaic deletion of Nle1 in the embryo. We show that Nle1 deletion in this context, results in severe developmental anomalies leading to lethality at birth. Mutant embryos display multiple developmental defects in particular during axial skeletal formation. We also provide evidence that axial defects are due to an increase in apoptotic cell death in the somite at E9.5. These data demonstrate an essential role for Nle1 during organogenesis and in particular during axial development.
维持细胞存活对于胚胎的正常发育至关重要。在小鼠中,Notchless同源物1(果蝇)(Nle1)对于植入后内细胞团细胞的存活至关重要。在此,我们使用Meox2(tm1(cre)Sor)小鼠分析植入后Nle1的功能,该小鼠在E5.5时在胚泡中特异性表达Cre重组酶。首先,我们发现胚泡细胞需要NLE1功能,因为Nle1缺陷细胞会迅速被清除。在本报告中,我们还表明Meox2(Cre)转基因在器官发生过程中在特定组织中具有活性。特别是,我们在脊柱、肋骨、四肢和尾芽中检测到高Cre表达。我们利用这种动态表达谱来分析在胚胎中诱导Nle1镶嵌缺失的影响。我们表明,在这种情况下Nle1缺失会导致严重的发育异常,导致出生时死亡。突变胚胎表现出多种发育缺陷,特别是在轴向骨骼形成过程中。我们还提供证据表明,轴向缺陷是由于E9.5时体节中凋亡细胞死亡增加所致。这些数据证明了Nle1在器官发生过程中,特别是在轴向发育过程中的重要作用。