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Circular RNA circ-ADD3 inhibits hepatocellular carcinoma metastasis through facilitating EZH2 degradation via CDK1-mediated ubiquitination

机译:环状RNA circ-ADD3通过CDK1介导的泛素化促进EZH2降解从而抑制肝癌的转移

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摘要

Emerging evidence suggests that circular RNA (circRNA) plays a fundamental role in tumorigenesis. However, its contribution to hepatocellular carcinoma (HCC) malignancy remains largely unknown. Here, we performed circRNA microarray expression profile in four paired HCC and normal tissues, and found that circ-ADD3, a novel circRNA derived from linear ADD3 exon 4 to exon 12, was significantly downregulated in HCC, which was further validated in 112 matched HCC and paracancerous tissues. High circ-ADD3 expression was negatively correlated with vascular invasion, intrahepatic metastasis as well as distant metastasis. Moreover, it was identified as an effective biomarker for diagnosis and prognosis of HCC. Functionally, exogenous expression of circ-ADD3 dramatically weakened HCC cell invasion and metastasis both in vitro and in vivo. Mechanistically, circ-ADD3 was capable of reinforcing the interaction between CDK1 and EZH2, resulting in increased EZH2 ubiquitination and subsequent degradation via phosphorylation at Thr-345 and Thr-487 sites. The decreased EZH2 markedly increased the expression of a cohort of anti-metastatic genes, including circ-ADD3, by reducing H3K27me3 levels on their promoter regions, which formed a regulatory circuit, thereby dampening HCC metastasis. Taken together, our findings unveil the essential role of circ-ADD3 in inhibiting HCC metastasis through regulation of EZH2 stability.
机译:新兴证据表明,环状RNA(circRNA)在肿瘤发生中起着基本作用。但是,其对肝细胞癌(HCC)恶性的贡献仍然未知。在这里,我们在四个成对的HCC和正常组织中进行了circRNA微阵列表达谱分析,发现circ-ADD3是从线性ADD3外显子4到外显子12衍生的新型circRNA,在HCC中明显下调,并在112个匹配的HCC中得到了进一步验证和癌旁组织。 circ-ADD3高表达与血管浸润,肝内转移以及远处转移呈负相关。此外,它被鉴定为诊断和预后肝癌的有效生物标志物。在功能上,circ-ADD3的外源表达在体外和体内均显着减弱了HCC细胞的侵袭和转移。从机理上讲,circ-ADD3能够增强CDK1和EZH2之间的相互作用,从而导致EZH2泛素化增加,并随后通过Thr-345和Thr-487位点的磷酸化而降解。降低的EZH2通过降低启动子区域的H3K27me3水平,从而显着增加了包括circ-ADD3在内的一系列抗转移基因的表达,从而形成了调节电路,从而抑制了HCC的转移。综上所述,我们的发现揭示了circ-ADD3在通过调节EZH2稳定性抑制HCC转移中的重要作用。

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