School of Molecular and Cellular Biology, Faculty of Biological Sciences and Astbury Centre for Structural Molecular Biology, University of Leeds, Leeds, UK.
The Pirbright Institute, Surrey, UK.
FASEB J. 2024 Jul 31;38(14):e23822. doi: 10.1096/fj.202400500R.
Secondary and tertiary RNA structures play key roles in genome replication of single-stranded positive sense RNA viruses. Complex, functional structures are particularly abundant in the untranslated regions of picornaviruses, where they are involved in initiation of translation, priming of new strand synthesis and genome circularization. The 5' UTR of foot-and-mouth disease virus (FMDV) is predicted to include a c. 360 nucleotide-long stem-loop, termed the short (S) fragment. This structure is highly conserved and essential for viral replication, but the precise function(s) are unclear. Here, we used selective 2' hydroxyl acetylation analyzed by primer extension (SHAPE) to experimentally determine aspects of the structure, alongside comparative genomic analyses to confirm structure conservation from a wide range of field isolates. To examine its role in virus replication in cell culture, we introduced a series of deletions to the distal and proximal regions of the stem-loop. These truncations affected genome replication in a size-dependent and, in some cases, host cell-dependent manner. Furthermore, during the passage of viruses incorporating the largest tolerated deletion from the proximal region of the S fragment stem-loop, an additional mutation was selected in the viral RNA-dependent RNA polymerase, 3D. These data suggest that the S fragment and 3D interact in the formation of the FMDV replication complex.
二级和三级 RNA 结构在单链正链 RNA 病毒的基因组复制中发挥关键作用。复杂的功能性结构在小核糖核酸病毒的非翻译区特别丰富,它们参与翻译起始、新链合成的引物和基因组环化。口蹄疫病毒 (FMDV) 的 5'UTR 预计包含一个约 360 个核苷酸长的茎环,称为短 (S) 片段。这种结构高度保守,对病毒复制至关重要,但确切的功能尚不清楚。在这里,我们使用选择性 2'羟基乙酰化分析引物延伸 (SHAPE) 来实验确定结构的某些方面,并进行比较基因组分析以从广泛的田间分离株中确认结构的保守性。为了研究它在细胞培养中复制病毒的作用,我们对茎环的远端和近端区域引入了一系列缺失。这些缺失以大小依赖性的方式影响基因组复制,在某些情况下还以宿主细胞依赖性的方式影响。此外,在通过近端区域 S 片段茎环最大耐受缺失的病毒传递过程中,病毒 RNA 依赖性 RNA 聚合酶 3D 中选择了另一个突变。这些数据表明,S 片段和 3D 在 FMDV 复制复合物的形成中相互作用。