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首页> 外文期刊>Developmental cell >SAG/RBX2/ROC2 E3 ubiquitin ligase is essential for vascular and neural development by targeting NF1 for degradation.
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SAG/RBX2/ROC2 E3 ubiquitin ligase is essential for vascular and neural development by targeting NF1 for degradation.

机译:SAG / RBX2 / ROC2 E3泛素连接酶通过靶向NF1降解而对血管和神经发育至关重要。

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SAG/RBX2/ROC2 protein is an essential RING component of SCF E3 ubiquitin ligase. The role of SAG during embryogenesis remains unknown. We report a critical role for SAG in controlling vascular and neural development by modulating RAS activity via promoting degradation of neurofibromatosis type 1 (NF1). Mice mutant for Sag died at embryonic day 11.5-12.5 with severe abnormalities in vascular and nervous system. Sag inactivation caused Nf1 accumulation and Ras inhibition, which blocks embryonic stem (ES) cells from undergoing endothelial differentiation and inhibits angiogenesis and proliferation in teratomas. Simultaneous Nf1 deletion fully rescues the differentiation defects in Sag(-/-) ES cells and partially rescues vascular and neural defects in Sag(-/-) embryos, suggesting that the effects of Sag deletion may not be solely explained by Nf1 misregulation. Collectively, our study identifies NF1 as a physiological substrate of SAG-CUL1-FBXW7 E3 ligase and establishes a ubiquitin-dependent regulatory mechanism for the NF1-RAS pathway during embryogenesis.
机译:SAG / RBX2 / ROC2蛋白是SCF E3泛素连接酶的重要RING成分。 SAG在胚胎发生过程中的作用仍然未知。我们报告通过控制RAS活性通过促进1型神经纤维瘤病(NF1)降解来调节SAG在控制血管和神经发育中的关键作用。 Sag的小鼠突变体在胚胎第11.5-12.5天死亡,血管和神经系统严重异常。凹陷失活导致Nf1积累和Ras抑制,从而阻止胚胎干(ES)细胞经历内皮分化并抑制畸胎瘤中的血管生成和增殖。同时删除Nf1可以完全挽救Sag(-/-)ES细胞的分化缺陷,并可以部分挽救Sag(-/-)胚胎中的血管和神经缺陷,这表明Sag缺失的影响可能不能仅由Nf1调控异常来解释。总的来说,我们的研究确定NF1为SAG-CUL1-FBXW7 E3连接酶的生理底物,并在胚胎发生过程中为NF1-RAS途径建立了泛素依赖性调控机制。

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