AFMB, CNRS, Aix-Marseille Université, UMR 7257, Case 932, 163 Avenue de Luminy, 13288 Marseille Cedex 09, France.
Antiviral Res. 2013 Sep;99(3):292-300. doi: 10.1016/j.antiviral.2013.06.001. Epub 2013 Jun 12.
Dengue virus (DENV) protein NS5 carries two mRNA cap methyltransferase (MTase) activities involved in the synthesis of a cap structure, (7Me)GpppA(2'OMe)-RNA, at the 5'-end of the viral mRNA. The methylation of the cap guanine at its N7-position (N7-MTase, (7Me)GpppA-RNA) is essential for viral replication. The development of high throughput methods to identify specific inhibitors of N7-MTase is hampered by technical limitations in the large scale synthesis of long capped RNAs. In this work, we describe an efficient method to generate such capped RNA, GpppA(2'OMe)-RNA₇₄, by ligation of two RNA fragments. Then, we use GpppA(2'OMe)-RNA₇₄ as a substrate to assess DENV N7-MTase activity and to develop a robust and specific activity assay. We applied the same ligation procedure to generate (7Me)GpppA-RNA₇₄ in order to characterize the DENV 2'-O-MTase activity specifically on long capped RNA. We next compared the N7- and 2'-O-MTase inhibition effect of 18 molecules, previously proposed to affect MTase activities. These experiments allow the validation of a rapid and sensitive method easily adaptable for high-throughput inhibitor screening in anti-flaviviral drug development.
登革热病毒 (DENV) 蛋白 NS5 具有两种 mRNA 帽甲基转移酶 (MTase) 活性,参与病毒 mRNA 5' 端帽结构 (7Me)GpppA(2'OMe)-RNA 的合成。帽鸟嘌呤在其 N7 位的甲基化(N7-MTase,(7Me)GpppA-RNA)对于病毒复制至关重要。开发高通量方法来鉴定 N7-MTase 的特异性抑制剂受到大规模合成长帽 RNA 的技术限制的阻碍。在这项工作中,我们描述了一种通过连接两个 RNA 片段生成这种帽 RNA,GpppA(2'OMe)-RNA₇₄ 的有效方法。然后,我们使用 GpppA(2'OMe)-RNA₇₄ 作为底物来评估 DENV N7-MTase 活性并开发一种稳健且特异性的活性测定方法。我们应用相同的连接程序来生成 (7Me)GpppA-RNA₇₄,以专门研究长帽 RNA 上 DENV 2'-O-MTase 活性。接下来,我们比较了 18 种先前被认为影响 MTase 活性的分子对 N7-和 2'-O-MTase 的抑制作用。这些实验验证了一种快速灵敏的方法,该方法易于适应抗黄病毒药物开发中的高通量抑制剂筛选。