Su Shu-Guang, Li Qiu-Li, Zhang Mei-Fang, Zhang Peng-Wei, Shen Huimin, Zhang Chris Zhiyi
Department of Pathology, The Affiliated Hexian Memorial Hospital of Southern Medical University, Guangzhou, China.
Department of Head and Neck Surgery, Sun Yat-sen University Cancer Center, Guangzhou, China.
Front Oncol. 2021 Feb 5;10:593293. doi: 10.3389/fonc.2020.593293. eCollection 2020.
Hepatocellular carcinoma (HCC) accounts for one of the leading causes of cancer-related death, and is attributed to the dysregulation of genes involved in genome stability. DDX11, a DNA helicase, has been implicated in rare genetic disease and human cancers. Yet, its clinical value, biological function, and the underlying mechanism in HCC progression are not fully understood. Here, we show that DDX11 is upregulated in HCC and exhibits oncogenic activity EZH2/p21 signaling. High expression of DDX11 is significantly correlated with poor outcomes of HCC patients in two independent cohorts. DDX11 overexpression increases HCC cell viabilities and colony formation, whereas DDX11 knockdown arrests cells at G1 phase without alteration of p53 expression. Ectopic expression of DDX11 reduces, while depletion of DDX11 induces the expression of p21. Treatment of p21 siRNA markedly attenuates the cell growth suppression caused by DDX11 silence. Further studies reveal that DDX11 interacts with EZH2 in HCC cells to protect it from ubiquitination-mediated protein degradation, consequently resulting in the downregulation of p21. In addition, E2F1 is identified as one of the upstream regulators of DDX11, and forms a positive feedback loop with EZH2 to upregulate DDX11 and facilitate cell proliferation. Collectively, our data suggest DDX11 as a promising prognostic factor and an oncogene in HCC a E2F1/DDX11/EZH2 positive feedback loop.
肝细胞癌(HCC)是癌症相关死亡的主要原因之一,归因于参与基因组稳定性的基因失调。DDX11是一种DNA解旋酶,与罕见遗传病和人类癌症有关。然而,其在HCC进展中的临床价值、生物学功能及潜在机制尚未完全明确。在此,我们发现DDX11在HCC中上调,并通过EZH2/p21信号传导表现出致癌活性。在两个独立队列中,DDX11的高表达与HCC患者的不良预后显著相关。DDX11过表达增加HCC细胞活力和集落形成,而DDX11敲低使细胞停滞在G1期,且不改变p53表达。DDX11的异位表达降低,而DDX11的缺失诱导p21表达。用p21 siRNA处理可显著减弱DDX11沉默引起的细胞生长抑制。进一步研究表明,DDX11在HCC细胞中与EZH2相互作用,保护其免受泛素化介导的蛋白质降解,从而导致p21下调。此外,E2F1被确定为DDX11的上游调节因子之一,并与EZH2形成正反馈环,上调DDX11并促进细胞增殖。总体而言,我们的数据表明DDX11作为一种有前景的预后因子和HCC中的致癌基因,通过E2F1/DDX11/EZH2正反馈环发挥作用。