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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Distinct genetic interactions between multiple Vegf receptors are required for development of different blood vessel types in zebrafish
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Distinct genetic interactions between multiple Vegf receptors are required for development of different blood vessel types in zebrafish

机译:斑马鱼中不同血管类型的发育需要多种Vegf受体之间不同的遗传相互作用

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Recent evidence indicates a specific role for vascular endothelial growth factor a (Vegfa) during artery development in both zebrafish and mouse embryos, whereas less is known about signals that govern vein formation. In zebrafish, loss of vegfa blocks segmental artery formation and reduces artery-specific gene expression, whereas veins are largely unaffected. Here, we describe a mutation in the zebrafish vegf receptor-2 homolog, kdra, which eliminates its kinase activity and leads to specific defects in artery development. We further find that Flt4, a receptor for Vegfc, cooperates with Kdr during artery morphogenesis, but not differentiation. We also identify an additional zebrafish vegfr-2 ortholog, referred to as kdrb, which can partially compensate for loss of kdra but is dispensable for vascular development in wild-type embryos. interestingly, we find that these Vegf receptors are also required for formation of veins but in distinct genetic interactions that differ from those required for artery development. Taken together, our results indicate that formation of arteries and veins in the embryo is governed in part by different Vegf receptor combinations and suggest a genetic mechanism for generating blood vessel diversity during vertebrate development.
机译:最近的证据表明,在斑马鱼和小鼠胚胎的动脉发育过程中,血管内皮生长因子a(Vegfa)的特定作用,而对控制静脉形成的信号知之甚少。在斑马鱼中,蔬菜损失会阻止节段性动脉的形成并降低动脉特异性基因的表达,而静脉则基本不受影响。在这里,我们描述了斑马鱼vegf受体2同源物kdra中的突变,该突变消除了其激酶活性并导致动脉发育中的特定缺陷。我们进一步发现,Vltfc的受体Flt4在动脉形态发生过程中与Kdr协同作用,但没有分化。我们还确定了另一个斑马鱼vegfr-2直系同源物,称为kdrb,它可以部分补偿kdra的损失,但对于野生型胚胎中的血管发育是必不可少的。有趣的是,我们发现这些Vegf受体也是形成静脉所必需的,但它们的独特遗传相互作用不同于动脉发育所必需的遗传相互作用。两者合计,我们的结果表明,胚胎中动脉和静脉的形成部分受不同Vegf受体组合的控制,并暗示了在脊椎动物发育过程中产生血管多样性的遗传机制。

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