Jin Suk-Won, Herzog Wiebke, Santoro Massimo M, Mitchell Tracy S, Frantsve Julie, Jungblut Benno, Beis Dimitris, Scott Ian C, D'Amico Leonard A, Ober Elke A, Verkade Heather, Field Holly A, Chi Neil C, Wehman Ann M, Baier Herwig, Stainier Didier Y R
Department of Biochemistry and Biophysics, Genetics and Human Genetics, and Cardiovascular Research Institute, University of California San Francisco, CA 94158, USA.
Dev Biol. 2007 Jul 1;307(1):29-42. doi: 10.1016/j.ydbio.2007.03.526. Epub 2007 Apr 5.
Formation of a functional vasculature during mammalian development is essential for embryonic survival. In addition, imbalance in blood vessel growth contributes to the pathogenesis of numerous disorders. Most of our understanding of vascular development and blood vessel growth comes from investigating the Vegf signaling pathway as well as the recent observation that molecules involved in axon guidance also regulate vascular patterning. In order to take an unbiased, yet focused, approach to identify novel genes regulating vascular development, we performed a three-step ENU mutagenesis screen in zebrafish. We first screened live embryos visually, evaluating blood flow in the main trunk vessels, which form by vasculogenesis, and the intersomitic vessels, which form by angiogenesis. Embryos that displayed reduced or absent circulation were fixed and stained for endogenous alkaline phosphatase activity to reveal blood vessel morphology. All putative mutants were then crossed into the Tg(flk1:EGFP)(s843) transgenic background to facilitate detailed examination of endothelial cells in live and fixed embryos. We screened 4015 genomes and identified 30 mutations affecting various aspects of vascular development. Specifically, we identified 3 genes (or loci) that regulate the specification and/or differentiation of endothelial cells, 8 genes that regulate vascular tube and lumen formation, 8 genes that regulate vascular patterning, and 11 genes that regulate vascular remodeling, integrity and maintenance. Only 4 of these genes had previously been associated with vascular development in zebrafish illustrating the value of this focused screen. The analysis of the newly defined loci should lead to a greater understanding of vascular development and possibly provide new drug targets to treat the numerous pathologies associated with dysregulated blood vessel growth.
哺乳动物发育过程中功能性脉管系统的形成对胚胎存活至关重要。此外,血管生长失衡会导致多种疾病的发病机制。我们对血管发育和血管生长的大部分理解来自于对Vegf信号通路的研究,以及最近关于轴突导向相关分子也调节血管模式形成的观察。为了采用一种无偏且有针对性的方法来鉴定调节血管发育的新基因,我们在斑马鱼中进行了三步ENU诱变筛选。我们首先对活胚胎进行视觉筛选,评估通过血管生成形成的主干血管和通过血管生成形成的体节间血管中的血流。对显示循环减少或无循环的胚胎进行固定,并对内源性碱性磷酸酶活性进行染色以揭示血管形态。然后将所有推定的突变体与Tg(flk1:EGFP)(s843)转基因背景杂交,以便于在活胚胎和固定胚胎中详细检查内皮细胞。我们筛选了4015个基因组,鉴定出30个影响血管发育各个方面的突变。具体而言,我们鉴定出3个调节内皮细胞特化和/或分化的基因(或基因座)、8个调节血管管和管腔形成的基因、8个调节血管模式形成的基因以及11个调节血管重塑、完整性和维持的基因。这些基因中只有4个以前在斑马鱼中与血管发育相关,说明了这种有针对性筛选的价值。对新定义基因座的分析应该会使我们对血管发育有更深入的了解,并可能为治疗与血管生长失调相关的众多疾病提供新的药物靶点。