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Downregulation of RND3/RhoE in glioblastoma patients promotes tumorigenesis through augmentation of notch transcriptional complex activity

机译:胶质母细胞瘤患者RND3 / RhoE的下调通过增加Notch转录复合物活性促进肿瘤发生

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摘要

Activation of Notch signaling contributes to glioblastoma multiform (GBM) tumorigenesis. However, the molecular mechanism that promotes the Notch signaling augmentation during GBM genesis remains largely unknown. Identification of new factors that regulate Notch signaling is critical for tumor treatment. The expression levels of RND3 and its clinical implication were analyzed in GBM patients. Identification of RND3 as a novel factor in GBM genesis was demonstrated in vitro by cell experiments and in vivo by a GBM xenograft model. We found that RND3 expression was significantly decreased in human glioblastoma. The levels of RND3 expression were inversely correlated with Notch activity, tumor size, and tumor cell proliferation, and positively correlated with patient survival time. We demonstrated that RND3 functioned as an endogenous repressor of the Notch transcriptional complex. RND3 physically interacted with NICD, CSL, and MAML1, the Notch transcriptional complex factors, promoted NICD ubiquitination, and facilitated the degradation of these cofactor proteins. We further revealed that RND3 facilitated the binding of NICD to FBW7, a ubiquitin ligase, and consequently enhanced NICD protein degradation. Therefore, Notch transcriptional activity was inhibited. Forced expression of RND3 repressed Notch signaling, which led to the inhibition of glioblastoma cell proliferation in vitro and tumor growth in the xenograft mice in vivo. Downregulation of RND3, however, enhanced Notch signaling activity, and subsequently promoted glioma cell proliferation. Inhibition of Notch activity abolished RND3 deficiency-mediated GBM cell proliferation. We conclude that downregulation of RND3 is responsible for the enhancement of Notch activity that promotes glioblastoma genesis.
机译:Notch信号的激活有助于胶质母细胞瘤(GBM)的肿瘤发生。但是,在GBM发生过程中促进Notch信号增强的分子机制仍然未知。鉴定调节Notch信号传导的新因子对于肿瘤治疗至关重要。分析GBM患者RND3的表达水平及其临床意义。通过细胞实验在体外和通过GBM异种移植模型在体内证明了RND3作为GBM发生中的新因子的鉴定。我们发现RND3表达在人类胶质母细胞瘤中显着降低。 RND3表达水平与Notch活性,肿瘤大小和肿瘤细胞增殖呈负相关,与患者生存时间呈正相关。我们证明RND3充当Notch转录复合物的内源性阻遏物。 RND3与Notch转录复合因子NICD,CSL和MAML1物理相互作用,促进NICD泛素化,并促进这些辅因子蛋白的降解。我们进一步揭示,RND3促进了NICD与FBW7(一种泛素连接酶)的结合,并因此增强了NICD蛋白的降解。因此,Notch转录活性受到抑制。 RND3的强制表达抑制Notch信号传导,从而导致胶质母细胞瘤细胞体外增殖和体内异种移植小鼠体内肿瘤生长受到抑制。然而,RND3的下调增强了Notch信号传导活性,并随后促进了神经胶质瘤细胞的增殖。 Notch活性的抑制消除了RND3缺乏介导的GBM细胞增殖。我们得出结论,RND3的下调是负责促进促进胶质母细胞瘤发生的Notch活性的。

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