首页> 外文期刊>FEBS Open Bio >Vascular endothelial growth factor suppresses TNFSF15 production in endothelial cells by stimulating miR‐31 and miR‐20a expression via activation of Akt and Erk signals
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Vascular endothelial growth factor suppresses TNFSF15 production in endothelial cells by stimulating miR‐31 and miR‐20a expression via activation of Akt and Erk signals

机译:血管内皮生长因子通过激活Akt和Erk信号刺激miR‐31和miR‐20a表达,从而抑制内皮细胞中TNFSF15的产生

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Tumor necrosis factor superfamily‐15 (TNFSF15; VEGI; TL1A) is a negative modulator of angiogenesis for blood vessel homeostasis and is produced by endothelial cells in a mature vasculature. It is known to be downregulated by vascular endothelial growth factor (VEGF), a major regulator of neovascularization but the mechanism of this interaction is unclear. Here we report that VEGF is able to stimulate the production of two microRNAs, miR‐20a and miR‐31, which directly target the 3′‐UTR of TNFSF15. Additionally, we show that two VEGF‐stimulated cell growth signals, Erk and Akt, are responsible for promoting the expression of miR‐20a and miR‐31. Treatment of human umbilical vein endothelial cells (HUVECs) with Akt inhibitor LY294002 results in diminished miR‐20a and miR‐31 production, while Erk inhibitor U0126 prevented VEGF‐stimulated expression of miR‐20a but not that of miR‐31. Furthermore, inactivation of either Erk or Akt signals restores TNFSF15 gene expression. In an angiogenesis assay, elevated miR‐20a or miR‐31 levels in HUVECs leads to enhancement of capillary‐like tubule formation in vitro, whereas lowered miR‐20a and miR‐31 levels results in an inhibition. These findings are consistent with the view that miR‐20a and miR‐31 mediate VEGF‐induced downregulation of TNFSF15. Targeting these microRNA molecules may therefore provide an effective approach to inhibit angiogenesis.
机译:肿瘤坏死因子超家族-15(TNFSF15; VEGI; TL1A)是血管稳态的血管生成负调节剂,由成熟脉管系统中的内皮细胞产生。已知它被新血管形成的主要调节剂血管内皮生长因子(VEGF)下调,但这种相互作用的机制尚不清楚。在这里我们报道VEGF能够刺激两种microRNA的产生,即miR-20a和miR-31,它们直接靶向TNFSF15的3'-UTR。此外,我们显示了两个VEGF刺激的细胞生长信号Erk和Akt负责促进miR-20a和miR-31的表达。用Akt抑制剂LY294002处理人脐静脉内皮细胞(HUVEC)导致miR-20a和miR-31产生减少,而Erk抑制剂U0126阻止VEGF刺激的miR-20a表达,但不能阻止miR-31表达。此外,Erk或Akt信号的失活可恢复TNFSF15基因表达。在血管生成测定中,HUVEC中的miR-20a或miR-31水平升高会导致体外毛细血管样小管形成的增强,而降低的miR-20a和miR-31水平会导致抑制。这些发现与miR-20a和miR-31介导VEGF诱导的TNFSF15下调的观点一致。因此,靶向这些微小RNA分子可以提供抑制血管生成的有效方法。

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