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二分体病毒 RNA 基因组异源二聚化影响基因组包装和病毒热稳定性。

Bipartite viral RNA genome heterodimerization influences genome packaging and virion thermostability.

机构信息

Department of Microbiology and Immunology, The University of Texas Medical Branch, Galveston, Texas, USA.

Department of Biochemistry and Molecular Biology, The University of Texas Medical Branch, Galveston, Texas, USA.

出版信息

J Virol. 2024 Mar 19;98(3):e0182023. doi: 10.1128/jvi.01820-23. Epub 2024 Feb 8.

Abstract

Multi-segmented viruses often multimerize their genomic segments to ensure efficient and stoichiometric packaging of the correct genetic cargo. In the bipartite Nodaviridae family, genome heterodimerization is also observed and conserved among different species. However, the nucleotide composition and biological function for this heterodimer remain unclear. Using Flock House virus as a model system, we developed a next-generation sequencing approach ("XL-ClickSeq") to probe heterodimer site sequences. We identified an intermolecular base-pairing site which contributed to heterodimerization in both wild-type and defective virus particles. Mutagenic disruption of this heterodimer site exhibited significant deficiencies in genome packaging and encapsidation specificity to viral genomic RNAs. Furthermore, the disruption of this intermolecular interaction directly impacts the thermostability of the mature virions. These results demonstrate that the intermolecular RNA-RNA interactions within the encapsidated genome of an RNA virus have an important role on virus particle integrity and thus may impact its transmission to a new host.IMPORTANCEFlock House virus is a member of Nodaviridae family of viruses, which provides a well-studied model virus for non-enveloped RNA virus assembly, cell entry, and replication. The Flock House virus genome consists of two separate RNA molecules, which can form a heterodimer upon heating of virus particles. Although similar RNA dimerization is utilized by other viruses (such as retroviruses) as a packaging mechanism and is conserved among Nodaviruses, the role of heterodimerization in the Nodavirus replication cycle is unclear. In this research, we identified the RNA sequences contributing to Flock House virus genome heterodimerization and discovered that such RNA-RNA interaction plays an essential role in virus packaging efficiency and particle integrity. This provides significant insight into how the interaction of packaged viral RNA may have a broader impact on the structural and functional properties of virus particles.

摘要

多节段病毒通常会使其基因组片段多聚化,以确保正确遗传物质的有效和化学计量包装。在二分体诺达病毒科中,也观察到基因组异源二聚化,并在不同物种中保守。然而,这种异源二聚体的核苷酸组成和生物学功能仍不清楚。我们使用 Flock House 病毒作为模型系统,开发了一种下一代测序方法(“XL-ClickSeq”)来探测异源二聚体位点序列。我们确定了一个分子间碱基配对位点,该位点有助于野生型和缺陷型病毒粒子的异源二聚化。该异源二聚体位点的诱变破坏导致基因组包装和病毒基因组 RNA 包裹的特异性显著缺陷。此外,这种分子间相互作用的破坏直接影响成熟病毒粒子的热稳定性。这些结果表明,RNA 病毒包裹基因组内的分子间 RNA-RNA 相互作用对病毒粒子完整性起着重要作用,因此可能影响其向新宿主的传播。

重要性:Flock House 病毒是 Nodaviridae 科病毒的一员,为非包膜 RNA 病毒组装、细胞进入和复制提供了一个研究良好的模型病毒。Flock House 病毒基因组由两个独立的 RNA 分子组成,这些分子在加热病毒粒子时可以形成异源二聚体。尽管其他病毒(如逆转录病毒)也利用类似的 RNA 二聚化作为包装机制,并且在 Nodaviruses 中保守,但异源二聚化在 Nodavirus 复制周期中的作用尚不清楚。在这项研究中,我们确定了导致 Flock House 病毒基因组异源二聚化的 RNA 序列,并发现这种 RNA-RNA 相互作用在病毒包装效率和粒子完整性中起着至关重要的作用。这为包装病毒 RNA 的相互作用如何更广泛地影响病毒粒子的结构和功能特性提供了重要的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/93a0/10949487/84b48b8538fc/jvi.01820-23.f001.jpg

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