Biedenkopf Nadine, Lange-Grünweller Kerstin, Schulte Falk W, Weißer Aileen, Müller Christin, Becker Dirk, Becker Stephan, Hartmann Roland K, Grünweller Arnold
Institut für Virologie, Philipps-Universität Marburg, Hans-Meerwein-Str. 2, 35043, Marburg, Germany; Deutsches Zentrum für Infektionsforschung (DZIF) at the Partner Site Gießen-Marburg-Langen, Germany.
Institut für Pharmazeutische Chemie, Philipps-Universität Marburg, Marbacher Weg 6, 35037, Marburg, Germany.
Antiviral Res. 2017 Jan;137:76-81. doi: 10.1016/j.antiviral.2016.11.011. Epub 2016 Nov 15.
The DEAD-box RNA helicase eIF4A, which is part of the heterotrimeric translation initiation complex in eukaryotes, is an important novel drug target in cancer research because its helicase activity is required to unwind extended and highly structured 5'-UTRs of several proto-oncogenes. Silvestrol, a natural compound isolated from the plant Aglaia foveolata, is a highly efficient, non-toxic and specific inhibitor of eIF4A. Importantly, 5'-capped viral mRNAs often contain structured 5'-UTRs as well, which may suggest a dependence on eIF4A for their translation by the host protein synthesis machinery. In view of the recent Ebola virus (EBOV) outbreak in West Africa, the identification of potent antiviral compounds is urgently required. Since Ebola mRNAs are 5'-capped and harbor RNA secondary structures in their extended 5'-UTRs, we initiated a BSL4 study to analyze silvestrol in EBOV-infected Huh-7 cells and in primary human macrophages for its antiviral activity. We observed that silvestrol inhibits EBOV infection at low nanomolar concentrations, as inferred from large reductions of viral titers. This correlated with an almost complete disappearance of EBOV proteins, comparable in effect to the translational shutdown of expression of the proto-oncoprotein PIM1, a cellular kinase known to be affected by silvestrol. Effective silvestrol concentrations were non-toxic in the tested cell systems. Thus, silvestrol appears to be a promising first-line drug for the treatment of acute EBOV and possibly other viral infections.
DEAD盒RNA解旋酶eIF4A是真核生物中异源三聚体翻译起始复合物的一部分,因其解旋酶活性对于解开几种原癌基因的延伸且高度结构化的5'-非翻译区(5'-UTR)是必需的,所以它是癌症研究中一个重要的新型药物靶点。Silvestrol是从植物毛脉番荔枝中分离出的一种天然化合物,是一种高效、无毒且特异性的eIF4A抑制剂。重要的是,5'-帽化的病毒mRNA通常也含有结构化的5'-UTR,这可能表明宿主蛋白质合成机制翻译这些mRNA依赖于eIF4A。鉴于最近西非爆发埃博拉病毒(EBOV)疫情,迫切需要鉴定出有效的抗病毒化合物。由于埃博拉病毒的mRNA是5'-帽化的,并且在其延伸的5'-UTR中具有RNA二级结构,我们启动了一项生物安全四级(BSL4)研究,以分析silvestrol在EBOV感染的Huh-7细胞和原代人巨噬细胞中的抗病毒活性。我们观察到,从病毒滴度大幅降低可推断,silvestrol在低纳摩尔浓度下就能抑制EBOV感染。这与EBOV蛋白几乎完全消失相关,其效果与原癌蛋白PIM1(一种已知受silvestrol影响的细胞激酶)表达的翻译关闭相当。有效的silvestrol浓度在测试的细胞系统中无毒。因此,silvestrol似乎是治疗急性EBOV感染以及可能的其他病毒感染的一种有前景的一线药物。