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首页> 外文期刊>American Journal of Cancer Research >RING-finger protein 6 enhances c-Myc-mediated Warburg effect by promoting MAD1 degradation to facilitate pancreatic cancer metastasis
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RING-finger protein 6 enhances c-Myc-mediated Warburg effect by promoting MAD1 degradation to facilitate pancreatic cancer metastasis

机译:戒指蛋白6通过促进MAD1降解来增强C-MYC介导的Warburg效果,以促进胰腺癌转移

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Aerobic glycolysis (the Warburg effect) promotes tumor metastasis; hence, drugs targeting its regulators are being developed. c-Myc, a critical transcription factor that regulates the Warburg effect, is involved in the tumorigenesis of many cancers, including pancreatic cancer (PC). However, the upstream regulating mechanisms of c-Myc in PC are unclear. Herein, we reported that E3 ubiquitin ligase RING-finger protein 6 (RNF6) was upregulated in PC tissues, and an elevated RNF6 level was closely associated with metastasis and poor prognosis in patients with PC. In functional experiments, RNF6 over-expression accelerated the metastatic ability of PC cells, whereas RNF6 knockdown impaired PC cell motility and invasiveness along with metastasis in an orthotopic mouse model. Furthermore, we found that RNF6 promoted PC cell metastasis by enhancing c-Myc-mediated aerobic glycolysis. Mechanistically, RNF6 increased the expression level of c-Myc by catalyzing the ubiquitination of Max-dimerization protein-1 (MAD1), a cellular antagonist of c-Myc. Lastly, RNF6 promoted the degradation of MAD1 via the ubiquitin-proteasome pathway, and this reduction in the MAD1 levels enabled c-Myc to promote the Warburg effect in PC. Our results demonstrate that RNF6 may be a novel biomarker in PC carcinogenesis, thereby indicating that targeting the RNF6/MAD1/c-Myc axis is a potential strategy for PC therapy.
机译:有氧糖酵解(Warburg效应)促进肿瘤转移;因此,正在开发针对其监管机构的药物。 C-MYC是调节Warburg效应的关键转录因素,涉及许多癌症的肿瘤发生,包括胰腺癌(PC)。然而,PC中C-MYC的上游调节机制尚不清楚。在此,我们报道了E3泛素连接酶环形蛋白6(RNF6)在PC组织中升高,并且升高的RNF6水平与PC患者的转移和预后不良密切相关。在功能实验中,RNF6过表达加速了PC细胞的转移能力,而RNF6敲低损伤的PC细胞运动性和侵入性以及在原位小鼠模型中的转移。此外,我们发现RNF6通过增强C-MYC介导的需氧糖溶解而促进了PC细胞转移。机械地,RNF6通过催化C-MYC的细胞拮抗剂催化最大二聚化蛋白-1(MAD1)的泛素来增加C-MYC的表达水平。最后,RNF6通过泛素 - 蛋白酶体途径促进了MAD1的降解,并且这种MAD1水平的降低使C-MYC能够促进PC中的Warburg效应。我们的结果表明,RNF6可以是PC致癌物中的新型生物标志物,从而指示靶向RNF6 / MAD1 / C-MYC轴是PC疗法的潜在策略。

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