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Hypoxia down-regulates sFlt-1 (sVEGFR-1) expression in human microvascular endothelial cells by a mechanism involving mRNA alternative processing

机译:低氧通过涉及mRNA替代加工的机制下调人微血管内皮细胞中sFlt-1(sVEGFR-1)的表达

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摘要

sFlt-1 (soluble Flt-1) potently inhibits angiogenesis by binding extracellularly to VEGF (vascular endothelial growth factor). In the present paper, we report that hypoxia down-regulates sFlt-1 expression in HMVECs (human microvascular endothelial cells), a constituent of microvessels where angiogenesis occurs. Hypoxia (5–1% O2) increased VEGF expression in HMVECs. In contrast, the levels of sFlt-1 mRNA and protein in HMVECs decreased significantly as the O2 concentration fell, whereas mFlt-1 (membrane-bound Flt-1) mRNA and protein remained unchanged. This suggested that hypoxia selectively regulates alternative 3′-end processing of sFlt-1 pre-mRNA. We have also demonstrated that sFlt-1 overexpression in lentiviral-construct-infected HMVECs counteracted VEGF-induced endothelial cell growth. We next identified cis-elements involved in sFlt-1 mRNA processing in HMVECs using a human Flt-1 minigene and found that two non-contiguous AUUAAA sequences function as the poly(A) signal. Furthermore, we identified a cis-element in intron 13 that regulates sFlt-1 mRNA processing. Mutagenesis of the U-rich region in intron 13 caused a significant decrease in the soluble-form/membrane-form RNA ratio in the minigene-transfected HMVECs. These results suggest that decreased sFlt-1 expression due to hypoxia contributes to hypoxia-induced angiogenesis and reveals a novel mechanism regulating angiogenesis by alternative mRNA 3′-end processing.
机译:sFlt-1(可溶性Flt-1)通过与VEGF(血管内皮生长因子)在细胞外结合而有效抑制血管生成。在本文中,我们报道缺氧下调HMVEC(人类微血管内皮细胞)中sFlt-1的表达,HMVEC是发生血管生成的微血管组成部分。缺氧(5–1%O2)增加HMVEC中的VEGF表达。相反,随着氧气浓度的下降,HMVECs中sFlt-1 mRNA和蛋白质的水平显着下降,而mFlt-1(膜结合的Flt-1)mRNA和蛋白质保持不变。这表明缺氧选择性地调节sFlt-1 pre-mRNA的3'-末端加工。我们还证明慢病毒构建感染的HMVEC中的sFlt-1过表达抵消了VEGF诱导的内皮细胞的生长。接下来,我们使用人类Flt-1小基因鉴定了参与HMVECs sFlt-1 mRNA处理的顺式元件,并发现两个不连续的AUUAAA序列起poly(A)信号的作用。此外,我们在调节sFlt-1 mRNA加工的内含子13中发现了一个顺式元件。内含子13中富U区域的诱变导致小基因转染的HMVEC中可溶性形式/膜形式RNA比率显着降低。这些结果表明,由于缺氧引起的sFlt-1表达降低有助于缺氧诱导的血管生成,并揭示了通过替代性mRNA 3'末端加工调节血管生成的新机制。

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