Institute for Cardiovascular Regeneration, Centre for Molecular Medicine, Goethe University, Frankfurt, Germany.
Blood. 2010 Jun 10;115(23):4944-50. doi: 10.1182/blood-2010-01-264812. Epub 2010 Mar 18.
MicroRNAs are endogenously expressed small noncoding RNAs that regulate gene expression on the posttranscriptional level. The miR-17-92 cluster (encoding miR-17, -18a, -19a/b, -20a, and miR-92a) is highly expressed in tumor cells and is up-regulated by ischemia. Whereas miR-92a was recently identified as negative regulator of angiogenesis, the specific functions of the other members of the cluster are less clear. Here we demonstrate that overexpression of miR-17, -18a, -19a, and -20a significantly inhibited 3-dimensional spheroid sprouting in vitro, whereas inhibition of miR-17, -18a, and -20a augmented endothelial cell sprout formation. Inhibition of miR-17 and miR-20a in vivo using antagomirs significantly increased the number of perfused vessels in Matrigel plugs, whereas antagomirs that specifically target miR-18a and miR-19a were less effective. However, systemic inhibition of miR-17/20 did not affect tumor angiogenesis. Further mechanistic studies showed that miR-17/20 targets several proangiogenic genes. Specifically, Janus kinase 1 was shown to be a direct target of miR-17. In summary, we show that miR-17/20 exhibit a cell-intrinsic antiangiogenic activity in endothelial cells. Inhibition of miR-17/20 specifically augmented neovascularization of Matrigel plugs but did not affect tumor angiogenesis indicating a context-dependent regulation of angiogenesis by miR-17/20 in vivo.
MicroRNAs 是内源性表达的小非编码 RNA,可在转录后水平调节基因表达。miR-17-92 簇(编码 miR-17、-18a、-19a/b、-20a 和 miR-92a)在肿瘤细胞中高度表达,并受缺血上调。虽然 miR-92a 最近被鉴定为血管生成的负调节剂,但该簇的其他成员的特定功能尚不清楚。在这里,我们证明 miR-17、-18a、-19a 和 -20a 的过表达显著抑制了体外 3 维球体发芽,而 miR-17、-18a 和 -20a 的抑制则增强了内皮细胞芽的形成。使用反义寡核苷酸在体内抑制 miR-17 和 miR-20a 显著增加了 Matrigel 塞中的灌注血管数量,而特异性针对 miR-18a 和 miR-19a 的反义寡核苷酸效果较差。然而,miR-17/20 的系统抑制并不影响肿瘤血管生成。进一步的机制研究表明,miR-17/20 靶向几个促血管生成基因。具体来说,Janus 激酶 1 被证明是 miR-17 的直接靶标。总之,我们表明 miR-17/20 在血管内皮细胞中表现出细胞内在的抗血管生成活性。抑制 miR-17/20 特异性增强了 Matrigel 塞的新生血管形成,但不影响肿瘤血管生成,表明 miR-17/20 在体内对血管生成的调节具有上下文依赖性。