De Mazière Ann, Parker Leon, Van Dijk Suzanne, Ye Weilan, Klumperman Judith
Cell Microscopy Center, Department of Cell Biology, University Medical Center Utrecht and Institute for Biomembranes, Utrecht, Netherlands.
Dev Dyn. 2008 Mar;237(3):580-91. doi: 10.1002/dvdy.21441.
The endothelial cell (EC) -specific secreted protein EGFL7 is important for tubulogenesis in newly forming blood vessels. We studied its role in vascular tube formation by a quantitative ultrastructural analysis of Egfl7-knockdown zebrafish embryos. At 24 hours postfertilization, the endothelia of dorsal aorta (DA) and posterior cardinal vein (PCV) were correctly anchored to the hypochord and endoderm, respectively, but failed to expand into the vascular area. This resulted in vessels with reduced or split lumen and open sheets of ECs. Concomitantly, the organization of hematopoietic cells-identified by the presence of previously undescribed membrane tubules-between DA and PCV, and within the vessels, was severely disturbed. Strikingly, ectopic cell junctions occurred across the obstructed vessel lumen, on the luminal EC surfaces, which in control conditions never display junctions of any kind. These data suggest that Egfl7 provides ECs with a cue for their extension into the vascular area and in establishing EC cell polarity.
内皮细胞(EC)特异性分泌蛋白EGFL7对新形成血管的管状发生至关重要。我们通过对Egfl7基因敲低的斑马鱼胚胎进行定量超微结构分析,研究了其在血管管形成中的作用。在受精后24小时,背主动脉(DA)和后主静脉(PCV)的内皮细胞分别正确地锚定在脊索和内胚层上,但未能扩展到血管区域。这导致血管腔减少或分裂,以及内皮细胞的开放片层。与此同时,在DA和PCV之间以及血管内,由先前未描述的膜性小管所识别的造血细胞的组织受到严重干扰。引人注目的是,在阻塞的血管腔内,在管腔内皮细胞表面出现了异位细胞连接,而在对照条件下这些表面从未显示出任何类型的连接。这些数据表明,EGFL7为内皮细胞提供了向血管区域延伸并建立内皮细胞极性的线索。