Integrative Vascular Biology Laboratory, Max-Delbrück Center for Molecular Medicine in the Helmholtz Association (MDC), Robert-Rössle-Strasse 10, Berlin 13125, Germany.
DZHK (German Center for Cardiovascular Research), Partner site, Potsdamer Str. 58, 10785 Berlin, Germany.
Development. 2021 Feb 19;148(4):dev194993. doi: 10.1242/dev.194993.
Previous studies have shown that Vasohibin 1 (Vash1) is stimulated by VEGFs in endothelial cells and that its overexpression interferes with angiogenesis Recently, Vash1 was found to mediate tubulin detyrosination, a post-translational modification that is implicated in many cell functions, such as cell division. Here, we used the zebrafish embryo to investigate the cellular and subcellular mechanisms of Vash1 on endothelial microtubules during formation of the trunk vasculature. We show that microtubules within venous-derived secondary sprouts are strongly and selectively detyrosinated in comparison with other endothelial cells, and that this difference is lost upon knockdown. Vash1 depletion in zebrafish specifically affected secondary sprouting from the posterior cardinal vein, increasing endothelial cell divisions and cell number in the sprouts. We show that altering secondary sprout numbers and structure upon depletion leads to defective lymphatic vessel formation and ectopic lymphatic progenitor specification in the zebrafish trunk.
先前的研究表明,血管生成抑制因子 1(Vash1)在血管内皮细胞中受 VEGFs 刺激,其过表达会干扰血管生成。最近,发现 Vash1 介导微管去酪氨酸化,这是一种翻译后修饰,与许多细胞功能有关,如细胞分裂。在这里,我们使用斑马鱼胚胎来研究在体节血管形成过程中 Vash1 对血管内皮微管的细胞和亚细胞机制。我们发现,与其他内皮细胞相比,静脉衍生的次级芽中的微管强烈且选择性地去酪氨酸化,而这种差异在 敲低后消失。斑马鱼中 Vash1 的耗竭特异性地影响了后侧心静脉的次级发芽,增加了发芽中的内皮细胞分裂和细胞数量。我们表明,改变次级芽的数量和结构会导致斑马鱼体节中的淋巴管形成缺陷和异位淋巴管祖细胞特化。