首页> 外文期刊>International journal of biological sciences >The Small Molecule R-(-)-β-O-Methylsynephrine Binds to Nucleoporin 153 kDa and Inhibits Angiogenesis
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The Small Molecule R-(-)-β-O-Methylsynephrine Binds to Nucleoporin 153 kDa and Inhibits Angiogenesis

机译:小分子R-(-)-β-O-甲基炔肾上腺素与核蛋白153 kDa结合并抑制血管生成

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R-(-)-β-O-methylsynephrine (OMe-Syn) is a naturally occurring small molecule that was identified in a previous screen as an inhibitor of angiogenesis. In this study, we conducted two animal model experiments to investigate the in vivo antiangiogenic activity of OMe-Syn. OMe-Syn significantly inhibited angiogenesis in a transgenic zebrafish model as well as in a mouse retinopathy model. To elucidate the underlying mechanisms responsible for the antiangiogenic activity of OMe-Syn, we used phage display cloning to isolate potential OMe-Syn binding proteins from human cDNA libraries and identified nucleoporin 153 kDa (NUP153) as a primary binding partner of OMe-Syn. OMe-Syn competitively inhibited mRNA binding to the RNA-binding domain of NUP153. Furthermore, depletion of NUP153 in human cells or zebrafish embryos led to an inhibition of angiogenesis, in a manner similar to that seen in response to OMe-Syn treatment. These data suggest that OMe-Syn is a promising candidate for the development of a novel antiangiogenic agent and that inhibition of NUP153 is possibly responsible for the antiangiogenic activity of OMe-Syn.
机译:R-(-)-β-O-甲基丝氨酸(OMe-Syn)是天然存在的小分子,在先前的筛选中被鉴定为血管生成抑制剂。在这项研究中,我们进行了两个动物模型实验,以研究OMe-Syn的体内抗血管生成活性。 OMe-Syn在转基因斑马鱼模型以及小鼠视网膜病变模型中均显着抑制血管生成。为了阐明负责OMe-Syn抗血管生成活性的潜在机制,我们使用噬菌体展示克隆从人cDNA文库中分离出潜在的OMe-Syn结合蛋白,并确定了153kDa核孔蛋白(NUP153)为OMe-Syn的主要结合伴侣。 OMe-Syn竞争性抑制mRNA结合NUP153的RNA结合域。此外,人细胞或斑马鱼胚胎中NUP153的消耗导致血管生成的抑制,其方式类似于对OMe-Syn处理的反应。这些数据表明,OMe-Syn是开发新型抗血管生成剂的有希望的候选者,抑制NUP153可能是OMe-Syn的抗血管生成活性的原因。

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