Calmels Christina, Métifiot Mathieu, Andreola Marie-Line
Univ. Bordeaux, CNRS, MFP, UMR 5234, F-33000 Bordeaux, France.
Univ. Bordeaux, CNRS, MFP, UMR 5234, F-33000 Bordeaux, France.
Biochimie. 2022 Apr;195:71-76. doi: 10.1016/j.biochi.2021.11.003. Epub 2021 Nov 13.
As ZIKV continues to spread, many "unknowns" remain and research is needed to advance the understanding of this important pathogen. Viral RNA dependent-RNA polymerases (RdRp) are validated targets for inhibitors of the replication of several viruses. Several studies have set up in vitro enzymatic assays of the RdRp of the Zika virus for testing of candidate inhibitors. While most of these studies use short synthetic polymers, we have shown in a previous work that the Zika polymerase domain is capable of a de novo synthesis of the viral genome using the natural viral RNA as template. Here we have studied the role of the sequences at the 3'end of the minus-strand RNA in the initiation of the RNA synthesis by the Zika isolated RdRp. Our results strongly suggest that the region containing the 105 first nucleotides from the 3' end of the minus-strand RNA is important for initiation of the positive RNA synthesis. This indicates that this region displays all the primary and secondary structures to be efficiently recognized by the recombinant RdRp in vitro. Moreover, we show that the 46 nucleotides are sufficient to initiate RNA synthesis. In addition, the ZIKV polymerase domain poorly replicated the RNA of other RNA viruses and appeared highly selective for its own RNA.
随着寨卡病毒不断传播,许多“未知因素”依然存在,需要开展研究以增进对这种重要病原体的了解。病毒RNA依赖性RNA聚合酶(RdRp)是几种病毒复制抑制剂的已验证靶点。多项研究已建立寨卡病毒RdRp的体外酶促测定法,用于测试候选抑制剂。虽然这些研究大多使用短合成聚合物,但我们在之前的一项工作中表明,寨卡聚合酶结构域能够以天然病毒RNA为模板从头合成病毒基因组。在此,我们研究了负链RNA 3'端序列在寨卡病毒分离的RdRp启动RNA合成中的作用。我们的结果有力地表明,包含负链RNA 3'端前105个核苷酸的区域对于启动正链RNA合成很重要。这表明该区域呈现出所有能被重组RdRp在体外有效识别的一级和二级结构。此外,我们表明46个核苷酸足以启动RNA合成。另外,寨卡病毒聚合酶结构域对其他RNA病毒的RNA复制能力很差,且对自身RNA表现出高度选择性。