血管生成
小RNA
血管生成
生物
内皮
癌症研究
新生血管
拮抗剂
下调和上调
细胞生物学
内皮干细胞
异位表达
免疫学
祖细胞
细胞培养
干细胞
体外
内分泌学
基因
生物化学
遗传学
作者
Sudarshan Anand,Bharat K. Majeti,Lisette M. Acevedo,Eric A. Murphy,Rajesh Mukthavaram,Lea Scheppke,Miller Huang,David J. Shields,Jeffrey N. Lindquist,Philip E. Lapinski,Philip D. King,Sara M. Weis,David A. Cheresh
出处
期刊:Nature Medicine
[Nature Portfolio]
日期:2010-08-01
卷期号:16 (8): 909-914
被引量:507
摘要
Although it is well established that tumors initiate an angiogenic switch, the molecular basis of this process remains incompletely understood. Here we show that the miRNA miR-132 acts as an angiogenic switch by targeting p120RasGAP in the endothelium and thereby inducing neovascularization. We identified miR-132 as a highly upregulated miRNA in a human embryonic stem cell model of vasculogenesis and found that miR-132 was highly expressed in the endothelium of human tumors and hemangiomas but was undetectable in normal endothelium. Ectopic expression of miR-132 in endothelial cells in vitro increased their proliferation and tube-forming capacity, whereas intraocular injection of an antagomir targeting miR-132, anti–miR-132, reduced postnatal retinal vascular development in mice. Among the top-ranking predicted targets of miR-132 was p120RasGAP, which we found to be expressed in normal but not tumor endothelium. Endothelial expression of miR-132 suppressed p120RasGAP expression and increased Ras activity, whereas a miRNA-resistant version of p120RasGAP reversed the vascular response induced by miR-132. Notably, administration of anti–miR-132 inhibited angiogenesis in wild-type mice but not in mice with an inducible deletion of Rasa1 (encoding p120RasGAP). Finally, vessel-targeted nanoparticle delivery1 of anti–miR-132 restored p120RasGAP expression in the tumor endothelium, suppressed angiogenesis and decreased tumor burden in an orthotopic xenograft mouse model of human breast carcinoma. We conclude that miR-132 acts as an angiogenic switch by suppressing endothelial p120RasGAP expression, leading to Ras activation and the induction of neovascularization, whereas the application of anti–miR-132 inhibits neovascularization by maintaining vessels in the resting state.
科研通智能强力驱动
Strongly Powered by AbleSci AI