Academy of Military Medical Sciences, No. 27 Taiping Road, Beijing 100850, China.
Int J Mol Sci. 2018 May 16;19(5):1488. doi: 10.3390/ijms19051488.
MicroRNAs (miRNAs) may become efficient antiviral agents against the Ebola virus (EBOV) targeting viral genomic RNAs or transcripts. We previously conducted a genome-wide search for differentially expressed miRNAs during viral replication and transcription. In this study, we established a rapid screen for miRNAs with inhibitory effects against EBOV using a tetracistronic transcription- and replication-competent virus-like particle (trVLP) system. This system uses a minigenome comprising an EBOV leader region, luciferase reporter, VP40, GP, VP24, EBOV trailer region, and three noncoding regions from the EBOV genome and can be used to model the life cycle of EBOV under biosafety level (BSL) 2 conditions. Informatic analysis was performed to select up-regulated miRNAs targeting the coding regions of the minigenome with the highest binding energy to perform inhibitory effect screening. Among these miRNAs, miR-150-3p had the most significant inhibitory effect. Reverse transcription polymerase chain reaction (RT-PCR), Western blot, and double fluorescence reporter experiments demonstrated that miR-150-3p inhibited the reproduction of trVLPs via the regulation of GP and VP40 expression by directly targeting the coding regions of GP and VP40. This novel, rapid, and convenient screening method will efficiently facilitate the exploration of miRNAs against EBOV under BSL-2 conditions.
微小 RNA(miRNAs)可能成为针对埃博拉病毒(EBOV)的有效抗病毒药物,针对病毒基因组 RNA 或转录本。我们之前进行了一项全基因组搜索,以寻找在病毒复制和转录过程中差异表达的 miRNAs。在这项研究中,我们使用四顺反子转录和复制有效的病毒样颗粒(trVLP)系统建立了针对 EBOV 的抑制性 miRNAs 的快速筛选方法。该系统使用包含 EBOV 启动子区域、荧光素酶报告基因、VP40、GP、VP24、EBOV 尾部区域和来自 EBOV 基因组的三个非编码区域的小基因组,可用于在生物安全级别 2 (BSL-2) 条件下模拟 EBOV 的生命周期。通过信息分析选择针对小基因组编码区的上调 miRNAs,这些 miRNA 与小基因组编码区的结合能最高,可进行抑制效果筛选。在这些 miRNAs 中,miR-150-3p 具有最显著的抑制作用。逆转录聚合酶链反应 (RT-PCR)、Western blot 和双荧光报告实验表明,miR-150-3p 通过直接靶向 GP 和 VP40 的编码区来调节 GP 和 VP40 的表达,从而抑制 trVLP 的复制。这种新颖、快速、方便的筛选方法将有效地促进在 BSL-2 条件下对 EBOV 的 miRNAs 的探索。