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Sphingosine 1-Phosphate Receptor Signaling Regulates Proper Embryonic Vascular Patterning

机译:Sphingosine 1-磷酸受体信号调节正常的胚胎血管模式。

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摘要

Sphingosine 1-phosphate (S1P) binds G-protein-coupled receptors (S1P1–5) to regulate a multitude of physiological effects, especially those in the vascular and immune systems. S1P receptors in the vascular system have been characterized primarily in mammals. Here, we report that the S1P receptors and metabolic enzymes are conserved in the genome of zebrafish Danio rerio. Bioinformatic analysis identified seven S1P receptor-like sequences in the zebrafish genome, including duplicated orthologs of receptors 3 and 5. Sphingolipidomic analysis detected erythrocyte and plasma S1P as well as high plasma ceramides and sphingosine. Morpholino-mediated knockdown of s1pr1 causes global and pericardial edema, loss of blood circulation, and vascular defects characterized by both reduced vascularization in intersegmental vessels, decreased proliferation of intersegmental and axial vessels, and hypersprouting in the caudal vein plexus. The s1pr2 gene was previously characterized as a regulator of cell migration and heart development, but its role in angiogenesis is not known. However, when expression of both s1pr1 and s1pr2 is suppressed, severely reduced vascular development of the intersegmental vessels was observed with doses of the s1pr1 morpholino that alone did not cause any discernible vascular defects, suggesting that s1pr1 and s1pr2 function cooperatively to regulate vascular development in zebrafish. Similarly, the S1P transporter, spns2, also cooperated with s1pr1. We propose that extracellular S1P acts through vascular S1P receptors to regulate vascular development.
机译:1-磷酸鞘氨醇(S1P)与G蛋白偶联受体(S1P1-5)结合,调节多种生理作用,尤其是在血管和免疫系统中。血管系统中的S1P受体主要是在哺乳动物中表征的。在这里,我们报告S1P受体和代谢酶在斑马鱼Danio rerio的基因组中是保守的。生物信息学分析鉴定了斑马鱼基因组中的七个S1P受体样序列,包括受体3和5的直向同源物。鞘脂分析检测到了红细胞和血浆S1P以及高血浆神经酰胺和鞘氨醇。 Morpholino介导的s1pr1的敲低会导致整体性和心包性水肿,血液循环损失以及血管缺陷,其特征在于段间血管的血管生成减少,段间和轴血管的增殖减少以及尾静脉丛中的发芽过多。 s1pr2基因以前被表征为细胞迁移和心脏发育的调节剂,但其在血管生成中的作用尚不清楚。但是,当同时抑制s1pr1和s1pr2的表达时,观察到s1pr1吗啉代的剂量严重降低了节间血管的发育,仅单独剂量就不会引起任何可辨认的血管缺陷,这表明s1pr1和s1pr2协同作用来调节血管的发育。斑马鱼。同样,S1P转运蛋白spns2也与s1pr1合作。我们建议细胞外S1P通过血管S1P受体来调节血管发育。

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