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首页> 外文期刊>Oncogene >Endothelial deletion of Sag/Rbx2/Roc2 E3 ubiquitin ligase causes embryonic lethality and blocks tumor angiogenesis
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Endothelial deletion of Sag/Rbx2/Roc2 E3 ubiquitin ligase causes embryonic lethality and blocks tumor angiogenesis

机译:Sag / Rbx2 / Roc2 E3泛素连接酶的内皮细胞缺失导致胚胎致死率并阻止肿瘤血管生成

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摘要

SAG (Sensitive to Apoptosis Gene), also known as RBX2 or ROC2, is a RING protein required for the activity of Cullin鈥揜ING ligase (CRL). Our recent study showed that Sag total knockout caused embryonic lethality at E11.5鈥?2.5 days with associated defects in vasculogenesis. Whether Sag is required for de novo vasculogenesis in embryos and angiogenesis in tumors is totally unknown. Here, we report that Sag endothelial deletion also causes embryonic lethality at E15.5 with poor vasculogenesis. Sag deletion in primary endothelial cells (ECs) or knockdown in MS-1 ECs inhibits migration, proliferation and tube formation, with p27 accumulation being responsible for the suppression of migration and proliferation. Furthermore, Sag deletion significantly inhibits angiogenesis in an in vivo Matrigel plug assay, and tumor angiogenesis and tumorigenesis in a B16F10 melanoma model. Finally, MLN4924, an investigational small molecule inhibitor of NEDD8-activating enzyme (NAE) that inhibits CRL, suppresses in vitro migration, proliferation and tube formation, as well as in vivo angiogenesis and tumorigenesis. Taken together, our study, using both genetic and pharmaceutical approaches, demonstrates that Sag is essential for embryonic vasculogenesis and tumor angiogenesis, and provides the proof-of-concept evidence that targeting Sag E3 ubiquitin ligase may have clinical value for anti-angiogenesis therapy of human cancer.
机译:SAG(对细胞凋亡基因敏感),也称为RBX2或ROC2,是Cullin'ing连接酶(CRL)活性所需的RING蛋白。我们最近的研究表明,Sag总敲除会在E11.5-2.5天导致胚胎致死,并伴有血管生成的相关缺陷。胚胎中的新生血管生成和肿瘤中的血管生成是否需要Sag。在此,我们报道Sag内皮细胞的缺失也导致E15.5处的胚胎致死,血管生成较差。初级内皮细胞(EC)中的凹陷降低或MS-1 EC中的敲低会抑制迁移,增殖和管形成,其中p27积累负责抑制迁移和增殖。此外,在体内基质胶塞试验中,Sag的缺失显着抑制了血管生成,而在B16F10黑素瘤模型中,其抑制了肿瘤血管生成和肿瘤发生。最后,MLN4924是NEDD8活化酶(NAE)的研究性小分子抑制剂,可抑制CRL,抑制体外迁移,增殖和管形成以及体内血管生成和肿瘤发生。综上所述,我们的研究使用遗传和药物方法,证明Sag对胚胎血管生成和肿瘤血管生成至关重要,并提供了概念证明,证明靶向Sag E3泛素连接酶可能具有抗Sug的临床价值。人类癌症的血管生成治疗。

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