首页> 美国卫生研究院文献>Journal of Cellular and Molecular Medicine >Loss of CCM3 impairs DLL4-Notch signalling: implication in endothelial angiogenesis and in inherited cerebral cavernous malformations
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Loss of CCM3 impairs DLL4-Notch signalling: implication in endothelial angiogenesis and in inherited cerebral cavernous malformations

机译:CCM3的丢失会损害DLL4-Notch信号:牵涉到内皮血管生成和遗传性脑海绵状畸形

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摘要

CCM3, a product of the cerebral cavernous malformation 3 or programmed cell death 10 gene (CCM3/PDCD10), is broadly expressed throughout development in both vertebrates and invertebrates. Increasing evidence indicates a crucial role of CCM3 in vascular development and in regulation of angiogenesis and apoptosis. Furthermore, loss of CCM3 causes inherited (familial) cerebral cavernous malformation (CCM), a common brain vascular anomaly involving aberrant angiogenesis. This study focused on signalling pathways underlying the angiogenic functions of CCM3. Silencing CCM3 by siRNA stimulated endothelial proliferation, migration and sprouting accompanied by significant downregulation of the core components of Notch signalling including DLL4, Notch4, HEY2 and HES1 and by activation of VEGF and Erk pathways. Treatment with recombinant DLL4 (rhDLL4) restored DLL4 expression and reversed CCM3-silence-mediated impairment of Notch signalling and reduced the ratio of VEGF-R2 to VEGF-R1 expression. Importantly, restoration of DLL4-Notch signalling entirely rescued the hyper-angiogenic phenotype induced by CCM3 silence. A concomitant loss of CCM3 and the core components of DLL4-Notch signalling were also demonstrated in CCM3-deficient endothelial cells derived from human CCM lesions (CCMEC) and in a CCM3 germline mutation carrier. This study defined DLL4 as a key downstream target of CCM3 in endothelial cells. CCM3/DLL4-Notch pathway serves as an important signalling for endothelial angiogenesis and is potentially implicated in the pathomechanism of human CCMs.
机译:CCM3是脑海绵状畸形3或程序性细胞死亡10基因(CCM3 / PDCD10)的产物,在脊椎动物和无脊椎动物的整个发育过程中广泛表达。越来越多的证据表明CCM3在血管发育以及调节血管生成和凋亡中起着至关重要的作用。此外,CCM3的缺失会导致遗传性(家族性)脑海绵状畸形(CCM),这是涉及异常血管生成的常见脑血管异常。这项研究的重点是潜在的CCM3血管生成功能的信号通路。 siRNA沉默CCM3可刺激内皮细胞增殖,迁移和发芽,并伴随Notch信号核心成分(包括DLL4,Notch4,HEY2和HES1)的显着下调,以及VEGF和Erk途径的激活。重组DLL4(rhDLL4)处理可恢复DLL4表达,并逆转CCM3沉默介导的Notch信号传导损伤,并降低VEGF-R2与VEGF-R1表达的比率。重要的是,DLL4-Notch信号的恢复完全挽救了CCM3沉默诱导的高血管生成表型。在源自人CCM损伤(CCMEC)的CCM3缺陷内皮细胞和CCM3种系突变载体中,也证明了CCM3和DLL4-Notch信号转导核心成分的伴随损失。这项研究将DLL4定义为内皮细胞中CCM3的关键下游靶标。 CCM3 / DLL4-Notch途径是内皮血管生成的重要信号,可能与人类CCM的致病机制有关。

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