An intra-family conserved high-order RNA structure within the M ORF is important for arterivirus subgenomic RNA accumulation and infectious virus production.

IF 4 2区 医学 Q2 VIROLOGY
Pengcheng Shang, Yanhua Li, Sawsan Napthine, Chi Chen, Ian Brierley, Andrew E Firth, Ying Fang
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引用次数: 0

Abstract

Synthesis of subgenomic RNAs is a strategy commonly used by polycistronic positive-sense single-stranded RNA viruses to express 3'-proximal genes. Members of the order Nidovirales, including coronaviruses and arteriviruses, use a unique discontinuous transcription strategy to synthesize subgenomic RNAs. In this study, in silico synonymous site conservation analysis and RNA structure folding predicted the existence of intra-family conserved high-order RNA structure within the M ORF of arteriviral genomes, which was further confirmed by RNA secondary structure probing. This RNA structure was determined to be important for the transcription/accumulation of subgenomic RNAs and the production of infectious viral particles. Mutations disrupting the stability of the RNA structures significantly decreased the accumulation of multiple subgenomic RNAs. In contrast, the impact of mutagenesis on full-length genomic RNA accumulation was limited. The degree to which wild-type levels of subgenomic RNA accumulation were maintained was found to correlate with the efficiency of infectious virus production. Moreover, the thermo-stability of stems within the high-order RNA structure is also well correlated with viral replication capacity and the maintenance of subgenomic RNA accumulation. This study is the first to report an intra-Arteriviridae conserved high-order RNA structure that is located in a protein-coding region and functions as an important cis-acting element to control the accumulation/transcription of arteriviral subgenomic RNAs. This work suggests a complex regulation mechanism between genome replication and discontinuous transcription in nidoviruses.IMPORTANCEArteriviruses are a group of RNA viruses that infect different animal species. They can cause diseases associated with respiratory/reproductive syndromes, abortion, or hemorrhagic fever. Among arteriviruses, porcine reproductive and respiratory syndrome virus (PRRSV) and equine arteritis virus (EAV) are economically important veterinary pathogens. The challenge in control of arterivirus infection reflects our limited knowledge of viral biology. In this study, we conducted a comprehensive analysis of arteriviral genomes and discovered intra-family conserved regions in the M ORF with a high-order RNA structure. The thermo-stability of the RNA structure influences sgRNA transcription/accumulation and correlates with the level of infectious virus production. Our studies provide new insight into arterivirus replication mechanisms, which may have implications for developing disease control and prevention strategies.

家族内保守的高阶RNA结构对于动脉病毒亚基因组RNA的积累和感染性病毒的产生是重要的。
合成亚基因组RNA是多顺反子正义单链RNA病毒表达3′-近端基因的常用策略。Nidovirales的成员,包括冠状病毒和动脉病毒,使用独特的不连续转录策略来合成亚基因组rna。本研究通过计算机同义位点保守分析和RNA结构折叠预测了动脉病毒基因组M ORF内存在家族内保守的高阶RNA结构,并通过RNA二级结构探测进一步证实。这种RNA结构对亚基因组RNA的转录/积累和感染性病毒颗粒的产生至关重要。破坏RNA结构稳定性的突变显著减少了多个亚基因组RNA的积累。相比之下,诱变对全长基因组RNA积累的影响有限。研究发现,野生型亚基因组RNA积累水平的维持程度与感染性病毒生产效率相关。此外,高阶RNA结构内茎的热稳定性也与病毒复制能力和亚基因组RNA积累的维持密切相关。这项研究首次报道了一种位于蛋白质编码区域的动脉病毒内保守的高阶RNA结构,该结构是控制动脉病毒亚基因组RNA积累/转录的重要顺式作用元件。这一工作提示在尼多病毒基因组复制和不连续转录之间存在复杂的调控机制。病毒是一组感染不同动物物种的RNA病毒。它们可引起与呼吸/生殖综合征、流产或出血热相关的疾病。在动脉病毒中,猪繁殖与呼吸综合征病毒(PRRSV)和马动脉炎病毒(EAV)是经济上重要的兽医病原体。控制动脉病毒感染的挑战反映了我们对病毒生物学的有限知识。在这项研究中,我们对动脉病毒基因组进行了全面的分析,并在M ORF中发现了具有高阶RNA结构的家族内保守区域。RNA结构的热稳定性影响sgRNA的转录/积累,并与感染性病毒的产生水平相关。我们的研究为动脉病毒的复制机制提供了新的见解,这可能对制定疾病控制和预防策略具有重要意义。
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来源期刊
Journal of Virology
Journal of Virology 医学-病毒学
CiteScore
10.10
自引率
7.40%
发文量
906
审稿时长
1 months
期刊介绍: Journal of Virology (JVI) explores the nature of the viruses of animals, archaea, bacteria, fungi, plants, and protozoa. We welcome papers on virion structure and assembly, viral genome replication and regulation of gene expression, genetic diversity and evolution, virus-cell interactions, cellular responses to infection, transformation and oncogenesis, gene delivery, viral pathogenesis and immunity, and vaccines and antiviral agents.
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