State Key Laboratory of Medical Molecular Biology, Institute of Basic Medical Sciences, Chinese Academy of Medical Sciences and School of Basic Medicine, Peking Union Medical College, Beijing 100005, China.
Department of Biochemistry and Molecular Biology, Institute of Basic Medical Sciences, Chinese Academy of Medical Sciences and School of Basic Medicine, Peking Union Medical College, Beijing 100005, China.
Nucleic Acids Res. 2019 Sep 19;47(16):8693-8707. doi: 10.1093/nar/gkz650.
Zika virus is a positive single-strand RNA virus whose replication involved RNA unwinding and synthesis. ZIKV NS3 contains a helicase domain, but its enzymatic activity is not fully characterized. Here, we established a dsRNA unwinding assay based on the FRET effect to study the helicase activity of ZIKV NS3, which provided kinetic information in real time. We found that ZIKV NS3 specifically unwound dsRNA/dsDNA with a 3' overhang in the 3' to 5' direction. The RNA unwinding ability of NS3 significantly decreased when the duplex was longer than 18 base pairs. The helicase activity of NS3 depends on ATP hydrolysis and binding to RNA. Mutations in the ATP binding region or the RNA binding region of NS3 impair its helicase activity, thus blocking viral replication in the cell. Furthermore, we showed that ZIKV NS5 interacted with NS3 and stimulated its helicase activity. Disrupting NS3-NS5 interaction resulted in a defect in viral replication, revealing the tight coupling of RNA unwinding and synthesis. We suggest that NS3 helicase activity is stimulated by NS5; thus, viral replication can be carried out efficiently. Our work provides a molecular mechanism of ZIKV NS3 unwinding and novel insights into ZIKV replication.
Zika 病毒是一种正链单股 RNA 病毒,其复制涉及 RNA 解旋和合成。ZIKV NS3 包含一个解旋酶结构域,但它的酶活性尚未完全表征。在这里,我们建立了一种基于 FRET 效应的 dsRNA 解旋测定法来研究 ZIKV NS3 的解旋酶活性,该方法可实时提供动力学信息。我们发现,ZIKV NS3 特异性地以 3' 到 5' 的方向解旋具有 3' 突出的 dsRNA/dsDNA。当双链体长于 18 个碱基时,NS3 的 RNA 解旋能力显著下降。NS3 的解旋酶活性依赖于 ATP 水解和与 RNA 的结合。NS3 的 ATP 结合区或 RNA 结合区的突变会损害其解旋酶活性,从而阻断细胞内的病毒复制。此外,我们表明 ZIKV NS5 与 NS3 相互作用并刺激其解旋酶活性。破坏 NS3-NS5 相互作用会导致病毒复制缺陷,揭示了 RNA 解旋和合成的紧密偶联。我们提出 NS3 解旋酶活性受到 NS5 的刺激;因此,病毒复制可以有效地进行。我们的工作提供了 ZIKV NS3 解旋的分子机制,并为 ZIKV 复制提供了新的见解。