Institute of Molecular Virology and Cell Biology, Friedrich-Loeffler-Institutgrid.417834.d, Greifswald-Insel Riems, Germany.
Institute of Novel and Emerging Infectious Diseases, Friedrich-Loeffler-Institutgrid.417834.d, Greifswald-Insel Riems, Germany.
J Virol. 2022 Sep 28;96(18):e0090022. doi: 10.1128/jvi.00900-22. Epub 2022 Aug 30.
Many negative-sense RNA viruses, including the highly pathogenic Ebola virus (EBOV), use cytoplasmic inclusion bodies (IBs) for viral RNA synthesis. However, it remains unclear how viral mRNAs are exported from these IBs for subsequent translation. We recently demonstrated that the nuclear RNA export factor 1 (NXF1) is involved in a late step in viral protein expression, i.e., downstream of viral mRNA transcription, and proposed it to be involved in this mRNA export process. We now provide further evidence for this function by showing that NXF1 is not required for translation of viral mRNAs, thus pinpointing its function to a step between mRNA transcription and translation. We further show that RNA binding of both NXF1 and EBOV NP is necessary for export of NXF1 from IBs, supporting a model in which NP hands viral mRNA over to NXF1 for export. Mapping of NP-NXF1 interactions allowed refinement of this model, revealing two separate interaction sites, one of them directly involving the RNA binding cleft of NP, even though these interactions are RNA-independent. Immunofluorescence analyses demonstrated that individual NXF1 domains are sufficient for its recruitment into IBs, and complementation assays helped to define NXF1 domains important for its function in the EBOV life cycle. Finally, we show that NXF1 is also required for protein expression of other viruses that replicate in cytoplasmic IBs, including Lloviu and Junín virus. These data suggest a role for NXF1 in viral mRNA export from IBs for various viruses, making it a potential target for broadly active antivirals. Filoviruses such as the Ebola virus (EBOV) cause severe hemorrhagic fevers with high case fatality rates and limited treatment options. The identification of virus-host cell interactions shared among several viruses would represent promising targets for the development of broadly active antivirals. In this study, we reveal the mechanistic details of how EBOV usurps the nuclear RNA export factor 1 (NXF1) to export viral mRNAs from viral inclusion bodies (IBs). We further show that NXF1 is not only required for the EBOV life cycle but also necessary for other viruses known to replicate in cytoplasmic IBs, including the filovirus Lloviu virus and the highly pathogenic arenavirus Junín virus. This suggests NXF1 as a promising target for the development of broadly active antivirals.
许多负义 RNA 病毒,包括高致病性埃博拉病毒(EBOV),都利用细胞质包含体(IB)来合成病毒 RNA。然而,目前尚不清楚病毒 mRNA 如何从这些 IB 中输出以供随后翻译。我们最近证明,核 RNA 输出因子 1(NXF1)参与病毒蛋白表达的晚期步骤,即在病毒 mRNA 转录之后,并提出它参与该 mRNA 输出过程。我们现在通过进一步证明 NXF1 不参与病毒 mRNA 的翻译来提供进一步证据,从而将其功能精确到 mRNA 转录和翻译之间的一个步骤。我们还进一步表明,NXF1 和 EBOV NP 的 RNA 结合对于 NXF1 从 IB 中的输出都是必需的,这支持了一种模型,即 NP 将病毒 mRNA 递交给 NXF1 以进行输出。NP-NXF1 相互作用的映射允许对该模型进行细化,揭示了两个单独的相互作用位点,其中一个直接涉及 NP 的 RNA 结合裂缝,尽管这些相互作用是 RNA 非依赖性的。免疫荧光分析表明,单个 NXF1 结构域足以使其招募到 IB 中,互补测定有助于定义 NXF1 结构域在 EBOV 生命周期中的功能的重要性。最后,我们证明 NXF1 对于在细胞质 IB 中复制的其他病毒的蛋白质表达也是必需的,包括 Lloviu 病毒和 Junín 病毒。这些数据表明 NXF1 在各种病毒的 IB 中病毒 mRNA 输出中起作用,使其成为具有广泛活性的抗病毒药物的潜在靶标。 丝状病毒,如埃博拉病毒(EBOV),会引起严重的出血性发热,病死率高,治疗选择有限。鉴定几种病毒之间共享的病毒-宿主细胞相互作用将成为开发具有广泛活性的抗病毒药物的有希望的靶标。在这项研究中,我们揭示了 EBOV 劫持核 RNA 输出因子 1(NXF1)将病毒 mRNA 从病毒包涵体(IB)中输出的机制细节。我们进一步表明,NXF1 不仅是 EBOV 生命周期所必需的,而且对于已知在细胞质 IB 中复制的其他病毒也是必需的,包括丝状病毒 Lloviu 病毒和高致病性正粘病毒 Junín 病毒。这表明 NXF1 是开发具有广泛活性的抗病毒药物的有希望的靶标。