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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >CDP-diacylglycerol synthetase-controlled phosphoinositide availability limits VEGFA signaling and vascular morphogenesis
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CDP-diacylglycerol synthetase-controlled phosphoinositide availability limits VEGFA signaling and vascular morphogenesis

机译:CDP-二酰基甘油合成酶控制的磷酸肌醇利用率限制了VEGFA信号传导和血管形态发生

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摘要

Understanding the mechanisms that regulate angiogenesis and translating these into effective therapies are of enormous scientific and clinical interests. In this report, we demonstrate the central role of CDP-diacylglycerol synthetase (CDS) in the regulation of VEGFA signaling and angiogenesis. CDS activity maintains phosphoinositide 4,5 bisphosphate (PIP2) availability through resynthesis of phosphoinositides, whereas VEGFA, mainly through phospholipase Cγ1, consumes PIP2 for signal transduction. Loss of CDS2, 1 of 2 vertebrate CDS enzymes, results in vascular-specific defects in zebrafish in vivo and failure of VEGFA-induced angiogenesis in endothelial cells in vitro. Absence of CDS2 also results in reduced arterial differentiation and reduced angiogenic signaling. CDS2 deficit-caused phenotypes can be successfully rescued by artificial elevation of PIP2 levels, and excess PIP2 or increased CDS2 activity can promote excess angiogenesis. These results suggest that availability of CDS-controlled resynthesis of phosphoinositides is essential for angiogenesis.
机译:了解调节血管生成的机制并将其转化为有效的疗法具有巨大的科学和临床意义。在本报告中,我们证明了CDP-二酰基甘油合成酶(CDS)在VEGFA信号传导和血管生成调节中的核心作用。 CDS活性通过重新合成磷酸肌醇来维持磷酸肌醇4,5双磷酸酯(PIP2)的可用性,而VEGFA主要通过磷脂酶Cγ1消耗PIP2进行信号转导。两种脊椎动物CDS酶之一中的CDS2缺失会导致斑马鱼体内血管特异性缺陷,并导致VEGFA诱导的内皮细胞体外血管生成失败。 CDS2的缺乏也导致动脉分化的减少和血管生成信号的减少。可以通过人工提高PIP2水平来成功挽救CDS2缺陷引起的表型,而过量的PIP2或增加的CDS2活性可以促进过量的血管生成。这些结果表明,CDS控制的磷酸肌醇再合成的可用性对于血管生成是必不可少的。

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