Basic Medical Sciences, Purdue University, West Lafayette, Indiana, USA.
Department of Medicinal Chemistry and Molecular Pharmacology, Purdue University, West Lafayette, Indiana, USA.
Gut. 2022 May;71(5):991-1005. doi: 10.1136/gutjnl-2020-323126. Epub 2021 May 21.
RNA helicase DDX5 is downregulated during HBV replication and poor prognosis HBV-related hepatocellular carcinoma (HCC). The objective of this study is to investigate the role of DDX5 in interferon (IFN) signalling. We provide evidence of a novel mechanism involving DDX5 that enables translation of transcription factor STAT1 mediating the IFN response.
Molecular, pharmacological and biophysical assays were used together with cellular models of HBV replication, HCC cell lines and liver tumours. We demonstrate that DDX5 regulates STAT1 mRNA translation by resolving a G-quadruplex (rG4) RNA structure, proximal to the 5' end of STAT1 5'UTR. We employed luciferase reporter assays comparing wild type (WT) versus mutant rG4 sequence, rG4-stabilising compounds, CRISPR/Cas9 editing of the STAT1-rG4 sequence and circular dichroism determination of the rG4 structure. STAT1-rG4 edited cell lines were resistant to the effect of rG4-stabilising compounds in response to IFN-α, while HCC cell lines expressing low DDX5 exhibited reduced IFN response. Ribonucleoprotein and electrophoretic mobility assays demonstrated direct and selective binding of RNA helicase-active DDX5 to the WT STAT1-rG4 sequence. Immunohistochemistry of normal liver and liver tumours demonstrated that absence of DDX5 corresponded to absence of STAT1. Significantly, knockdown of DDX5 in HBV infected HepaRG cells reduced the anti-viral effect of IFN-α.
RNA helicase DDX5 resolves a G-quadruplex structure in 5'UTR of STAT1 mRNA, enabling STAT1 translation. We propose that DDX5 is a key regulator of the dynamic range of IFN response during innate immunity and adjuvant IFN-α therapy.
在乙型肝炎病毒(HBV)复制和预后不良的 HBV 相关肝细胞癌(HCC)中,RNA 解旋酶 DDX5 下调。本研究旨在探讨 DDX5 在干扰素(IFN)信号转导中的作用。我们提供了涉及 DDX5 的新机制的证据,该机制使转录因子 STAT1 的翻译成为可能,从而介导 IFN 反应。
使用分子、药理学和生物物理测定方法以及 HBV 复制的细胞模型、HCC 细胞系和肝肿瘤。我们证明,DDX5 通过解析靠近 STAT1 5'UTR 5'端的 G-四链体(rG4)RNA 结构来调节 STAT1 mRNA 的翻译。我们采用了荧光素酶报告基因测定法,比较了野生型(WT)与突变 rG4 序列、rG4 稳定化合物、STAT1-rG4 序列的 CRISPR/Cas9 编辑以及 rG4 结构的圆二色性测定。STAT1-rG4 编辑细胞系对 rG4 稳定化合物在 IFN-α 作用下的反应具有抗性,而表达低 DDX5 的 HCC 细胞系则表现出降低的 IFN 反应。核糖核蛋白和电泳迁移率测定法表明,RNA 解旋酶活性的 DDX5 与 WT STAT1-rG4 序列直接且选择性结合。正常肝脏和肝肿瘤的免疫组织化学显示,DDX5 的缺失对应于 STAT1 的缺失。重要的是,在 HBV 感染的 HepaRG 细胞中敲低 DDX5 会降低 IFN-α 的抗病毒作用。
RNA 解旋酶 DDX5 解析 STAT1 mRNA 5'UTR 中的 G-四链体结构,从而使 STAT1 翻译。我们提出,DDX5 是固有免疫和辅助 IFN-α 治疗期间 IFN 反应动态范围的关键调节剂。