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首页> 外文期刊>Developmental biology >A genetic screen for vascular mutants in zebrafish reveals dynamic roles for Vegf/Plcg1 signaling during artery development.
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A genetic screen for vascular mutants in zebrafish reveals dynamic roles for Vegf/Plcg1 signaling during artery development.

机译:斑马鱼中的血管突变体的遗传筛选揭示了在动脉发育过程中Vegf / Plcg1信号传导的动态作用。

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In this work we describe a forward genetic approach to identify mutations that affect blood vessel development in the zebrafish. By applying a haploid screening strategy in a transgenic background that allows direct visualization of blood vessels, it was possible to identify several classes of mutant vascular phenotypes. Subsequent characterization of mutant lines revealed that defects in Vascular endothelial growth factor (Vegf) signaling specifically affected artery development. Comparison of phenotypes associated with different mutations within a functional zebrafish Vegf receptor-2 ortholog (referred to as kdr-like, kdrl) revealed surprisingly varied effects on vascular development. In parallel, we identified an allelic series of mutations in phospholipase c gamma 1 (plcg1). Together with in vivo structure-function analysis, our results suggest a requirement for Plcg1 catalytic activity downstream of receptor tyrosine kinases. We further find that embryos lacking both maternal and zygotic plcg1 display more severe defects in artery differentiation but are otherwise similar to zygotic mutants. Finally, we demonstrate through mosaic analysis that plcg1 functions autonomously in endothelial cells. Together our genetic analyses suggest that Vegf/Plcg1 signaling acts at multiple time points and in different signaling contexts to mediate distinct aspects of artery development.
机译:在这项工作中,我们描述了一种正向遗传方法,用于鉴定影响斑马鱼血管发育的突变。通过在允许直接可视化血管的转基因背景中应用单倍体筛选策略,可以鉴定出几类突变的血管表型。突变株系的后续特征表明,血管内皮生长因子(Vegf)信号缺陷特别影响动脉发育。在功能性斑马鱼Vegf受体2直系同源基因(称为kdr样,kdrl)中与不同突变相关的表型的比较显示出对血管发育的出乎意料的变化。同时,我们在磷脂酶cγ1(plcg1)中鉴定了一个等位基因突变系列。连同体内结构功能分析,我们的结果表明需要受体酪氨酸激酶下游的Plcg1催化活性。我们进一步发现缺乏母体和合子plcg1的胚胎在动脉分化方面显示出更严重的缺陷,但与合子突变体相似。最后,我们通过镶嵌分析证明plcg1在内皮细胞中自主发挥功能。我们的遗传分析共同表明,Vegf / Plcg1信号传导在多个时间点和不同的信号传导环境中起作用,以介导动脉发育的不同方面。

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