Department of Biological Sciences, The University of Texas at El Paso, El Paso, TX 79968, USA.
Virus Res. 2010 Jun;150(1-2):12-21. doi: 10.1016/j.virusres.2010.02.006. Epub 2010 Feb 20.
Nodamura virus (NoV; family Nodaviridae) contains a bipartite positive-strand RNA genome that replicates via negative-strand intermediates. The specific structural and sequence determinants for initiation of nodavirus RNA replication have not yet been identified. For the related nodavirus Flock House virus (FHV) undefined sequences within the 3'-terminal 50 nucleotides (nt) of FHV RNA2 are essential for its replication. We previously showed that a conserved stem-loop structure (3'SL) is predicted to form near the 3' end of the RNA2 segments of seven nodaviruses, including NoV. We hypothesized that the 3'SL structure from NoV RNA2 is an essential cis-acting element for RNA replication. To determine whether the structure can actually form within RNA2, we analyzed the secondary structure of NoV RNA2 in vitro transcripts using nuclease mapping. The resulting nuclease maps were 86% consistent with the predicted 3'SL structure, suggesting that it can form in solution. We used a well-defined reverse genetic system for launch of NoV replication in yeast cells to test the function of the 3'SL in the viral life cycle. Deletion of the nucleotides that comprise the 3'SL from a NoV2-GFP chimeric replicon resulted in a severe defect in RNA2 replication. A minimal replicon containing the 5'-terminal 17 nt and the 3'-terminal 54 nt of RNA2 (including the predicted 3'SL) retained the ability to replicate in yeast, suggesting that this region is able to direct replication of a heterologous mRNA. These data suggest that the 3'SL plays an essential role in replication of NoV RNA2. The conservation of the predicted 3'SL suggests that this common motif may play a role in RNA replication for the other members of the Nodaviridae.
日本囊对虾诺达病毒(NoV;Nodaviridae 科)含有分段的正链 RNA 基因组,通过负链中间体进行复制。启动诺达病毒 RNA 复制的具体结构和序列决定因素尚未确定。对于相关的诺达病毒 Flock House 病毒(FHV),FHV RNA2 的 3'末端 50 个核苷酸(nt)内的未定义序列对其复制至关重要。我们之前表明,在包括 NoV 在内的七种诺达病毒的 RNA2 片段的 3'末端附近,预测会形成一个保守的茎环结构(3'SL)。我们假设 NoV RNA2 的 3'SL 结构是 RNA 复制的必需顺式作用元件。为了确定该结构实际上是否可以在 RNA2 内形成,我们使用核酸酶作图法分析了 NoV RNA2 的体外转录物的二级结构。得到的核酸酶图谱与预测的 3'SL 结构有 86%的一致性,表明它可以在溶液中形成。我们使用经过充分定义的反向遗传系统在酵母细胞中启动 NoV 复制,以测试该病毒生命周期中 3'SL 的功能。从 NoV2-GFP 嵌合复制子中删除组成 3'SL 的核苷酸会导致 RNA2 复制严重缺陷。包含 RNA2 的 5'端 17 个核苷酸和 3'端 54 个核苷酸(包括预测的 3'SL)的最小复制子保留了在酵母中复制的能力,表明该区域能够指导异源 mRNA 的复制。这些数据表明,3'SL 在 NoV RNA2 的复制中发挥着重要作用。预测的 3'SL 的保守性表明,该共同基序可能在 Nodaviridae 其他成员的 RNA 复制中发挥作用。