University of Padova, Department of Biology, Padova, Italy.
Max Planck Institute for Heart and Lung Research, Bad Nauheim, Germany.
Sci Rep. 2018 Jul 5;8(1):10189. doi: 10.1038/s41598-018-27657-x.
As effectors of the Hippo signaling cascade, YAP1 and TAZ are transcriptional regulators playing important roles in development, tissue homeostasis and cancer. A number of different cues, including mechanotransduction of extracellular stimuli, adhesion molecules, oncogenic signaling and metabolism modulate YAP1/TAZ nucleo-cytoplasmic shuttling. In the nucleus, YAP1/TAZ tether with the DNA binding proteins TEADs, to activate the expression of target genes that regulate proliferation, migration, cell plasticity, and cell fate. Based on responsive elements present in the human and zebrafish promoters of the YAP1/TAZ target gene CTGF, we established zebrafish fluorescent transgenic reporter lines of Yap1/Taz activity. These reporter lines provide an in vivo view of Yap1/Taz activity during development and adulthood at the whole organism level. Transgene expression was detected in many larval tissues including the otic vesicles, heart, pharyngeal arches, muscles and brain and is prominent in endothelial cells. Analysis of vascular development in yap1/taz zebrafish mutants revealed specific defects in posterior cardinal vein (PCV) formation, with altered expression of arterial/venous markers. The overactivation of Yap1/Taz in endothelial cells was sufficient to promote an aberrant vessel sprouting phenotype. Our findings confirm and extend the emerging role of Yap1/Taz in vascular development including angiogenesis.
作为 Hippo 信号级联的效应物,YAP1 和 TAZ 是转录调节剂,在发育、组织稳态和癌症中发挥重要作用。许多不同的信号,包括细胞外刺激的机械转导、黏附分子、致癌信号和代谢,调节 YAP1/TAZ 的核质穿梭。在核内,YAP1/TAZ 与 DNA 结合蛋白 TEADs 结合,激活调节增殖、迁移、细胞可塑性和细胞命运的靶基因的表达。基于人类和斑马鱼 Yap1/TAZ 靶基因 CTGF 启动子中存在的响应元件,我们建立了 Yap1/Taz 活性的斑马鱼荧光转基因报告系。这些报告系在整个生物体水平上提供了 Yap1/Taz 活性在发育和成年期的体内观察。转基因表达在许多幼虫组织中被检测到,包括耳泡、心脏、咽弓、肌肉和大脑,在血管内皮细胞中尤为明显。在 yap1/taz 斑马鱼突变体中血管发育的分析显示,后心静脉(PCV)形成存在特定缺陷,动脉/静脉标记物的表达发生改变。内皮细胞中 Yap1/Taz 的过度激活足以促进异常的血管发芽表型。我们的发现证实并扩展了 Yap1/Taz 在包括血管生成在内的血管发育中的新兴作用。