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A role for Egfl7 during endothelial organization in the embryoid body model system

机译:Egfl7在胚状体模型系统中的内皮组织形成过程中的作用

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摘要

Epidermal growth factor-like domain 7, Egfl7, is a largely endothelial restricted gene which is thought to have a role during the differentiation of embryonic stem cells (ESCs) along the endothelial lineage. While it has been shown that Egfl7 knock-down in zebrafish impairs endothelial cord formation, the role of the gene in mammals has been unresolved. Interpretation of mouse knockout studies has been complicated by the fact that deletion of miR-126, an intronic microRNA located within Egfl7, results in vascular defects. Here we use an siRNA knock-down approach to target specific regions of Egfl7 without affecting miR-126 expression. Egfl7 was knocked down in mouse ESCs and the effect on vascular development was assessed using the in vitro embryoid body (EB) model after either 7 or 14 days of differentiation. Knock-down of Egfl7 resulted in the formation of abnormal sheet-like CD31+ structures that were abundant within EBs after 7 days of differentiation. Only up to 60% of these sheets co-expressed basement membrane and endothelial cell junction markers. Similar CD31+ sheets were also seen as outgrowths from 7 day EBs into collagen gels. A partial remodelling occurred by 14 days of differentiation when fewer CD31+ sheets were seen both within EBs, and as outgrowths from EBs. Formation of these sheets was due, at least in part, to increased proliferation specifically of CD31+ cells. Cell death within EBs was unaffected by Egfl7 knock-down. In conclusion, our work shows that knock-down of Egfl7 causes defects in early vascular cord formation, and results in the development of CD31+ sheet-like structures. This suggests that Egfl7 is vital for the formation of endothelial cell cords, and that the gene has an important role during both vasculogenesis and angiogenesis in mammalian cells.
机译:表皮生长因子样结构域7,Egf17,是一个很大程度上受内皮限制的基因,被认为在沿胚胎谱系分化胚胎干细胞(ESC)的过程中起作用。虽然已经证明斑马鱼中的Egf17敲低会损害内皮索的形成,但是该基因在哺乳动物中的作用尚未得到解决。小鼠基因敲除研究的解释因以下事实而变得复杂:缺失miR-126(位于Egf17内的内含性microRNA)会导致血管缺陷。在这里,我们使用siRNA敲低方法靶向Egf17的特定区域,而不会影响miR-126的表达。在小鼠胚胎干细胞中敲除Egf17,并在分化7天或14天后使用体外胚状体(EB)模型评估对血管发育的影响。分化7天后,Egf17的敲低导致形成异常的片状CD31 +结构,这些结构在EB内富集。这些薄片中只有多达60%共表达基底膜和内皮细胞连接标记。相似的CD31 +片也被视为从7天EB进入胶原凝胶的产物。分化后14天,当在EB内以及从EB的产物中发现较少的CD31 +片时,发生了部分重塑。这些片的形成至少部分是由于CD31 +细胞的增殖增加所致。 EBs内的细胞死亡不受Egf17敲低的影响。总之,我们的工作表明,敲除Egf17会导致早期血管索形成缺陷,并导致CD31 +片状结构的发展。这表明Egf17对内皮细胞索的形成至关重要,并且该基因在哺乳动物细胞的血管生成和血管生成中均具有重要作用。

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