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-编码的成熟NS3在经典猪瘟病毒基因组包装中的重要作用。

Essential role of -encoded mature NS3 in the genome packaging of classical swine fever virus.

作者信息

Lamp Benjamin, Barth Sandra, Reuscher Carina, Affeldt Sebastian, Cechini Angelika, Netsch Anette, Lobedank Irmin, Rümenapf Till

机构信息

Institute of Virology, Justus-Liebig-Universität Gießen, Giessen, Hesse, Germany.

Institute of Virology, Department for Pathobiology, University of Veterinary Medicine, Vienna, Austria.

出版信息

J Virol. 2025 Feb 25;99(2):e0120924. doi: 10.1128/jvi.01209-24. Epub 2024 Dec 26.

Abstract

UNLABELLED

Classical swine fever virus (CSFV) is a member of the genus within the family . The enveloped particles contain a plus-stranded RNA genome encoding a single large polyprotein. The processing of this polyprotein undergoes dynamic changes throughout the infection cycle. The release of mature NS3 from the polyprotein is mediated and regulated by the NS2 autoprotease and a cellular co-factor, restricting efficient cleavage to the early phases of infection. NS3 is a multifunctional viral enzyme exhibiting helicase, NTPase, and protease activities pivotal for viral replication. Hence, the release of mature NS3 fuels replication, whereas unprocessed NS2-3 precursors are vital for progeny virus production in later phases of infection. Thus far, no packaging signals have been identified for pestivirus RNA. To explore the prerequisites for particle assembly, -packaging experiments were conducted using CSFV subgenomes and coreless CSFV strains. Intriguingly, we discovered a significant role of mature NS3 in genome packaging, effective only when the protein is encoded by the RNA molecule itself. This finding was reinforced by employing artificially engineered CSFV strains with duplicated NS3 genes, separating uncleavable NS2-3 precursors from mature NS3 molecules. The model for NS2-3/NS3 functions in genome packaging of pestiviruses appears to be much more complicated than anticipated, involving distinct functions of the mature NS3 and its precursor molecule NS2-3. Moreover, the reliance of genome packaging on -encoded NS3 may act as a downstream quality control mechanism, averting the packaging of defective genomes and coordinating the encapsidation of RNA molecules before membrane acquisition.

IMPORTANCE

Pestiviruses are economically significant pathogens in livestock. Although genome organization and non-structural protein functions resemble those of other genera, distinct differences can be observed. Previous studies showed that coreless CSFV strains can produce coreless virions mediated by single compensatory mutations in NS3. In this study, we could show that only RNA molecules encoding these mutations in the mature NS3 are packaged in the absence of the core protein. Unlike this selectivity, a pool of structural proteins in the host cell was readily available for packaging all CSFV genomes. Similarly, the NS2-3-4A precursor molecules required for packaging could also be provided in . Consequently, genome packaging in pestiviruses is governed by -encoded mature NS3. Reliance on -acting proteins restricts the acceptance of defective genomes and establishes packaging specificity regardless of RNA sequence-specific packaging signals. Understanding the role of NS3 in pestiviral genome packaging might uncover new targets for antiviral therapies.

摘要

未标记

经典猪瘟病毒(CSFV)是科内属的一个成员。包膜颗粒含有一个编码单一大型多聚蛋白的正链RNA基因组。该多聚蛋白的加工在整个感染周期中经历动态变化。成熟NS3从多聚蛋白中的释放由NS2自蛋白酶和一种细胞辅助因子介导和调节,将有效切割限制在感染的早期阶段。NS3是一种多功能病毒酶,具有解旋酶、NTP酶和蛋白酶活性,对病毒复制至关重要。因此,成熟NS3的释放促进复制,而未加工的NS2-3前体在感染后期对子代病毒的产生至关重要。迄今为止,尚未确定瘟病毒RNA的包装信号。为了探索病毒颗粒组装的先决条件,使用CSFV亚基因组和无核心CSFV毒株进行了包装实验。有趣的是,我们发现成熟NS3在基因组包装中具有重要作用,只有当该蛋白由RNA分子本身编码时才有效。通过使用具有重复NS3基因的人工工程CSFV毒株,将不可切割的NS2-3前体与成熟NS3分子分离,这一发现得到了加强。瘟病毒基因组包装中NS2-3/NS3功能的模型似乎比预期的要复杂得多,涉及成熟NS3及其前体分子NS2-3的不同功能。此外,基因组包装对编码的NS3的依赖可能作为一种下游质量控制机制,避免缺陷基因组的包装,并在获得膜之前协调RNA分子的衣壳化。

重要性

瘟病毒是家畜中具有经济重要性的病原体。尽管基因组组织和非结构蛋白功能与其他属相似,但仍可观察到明显差异。先前的研究表明,无核心CSFV毒株可产生由NS3中的单个补偿性突变介导的无核心病毒粒子。在本研究中,我们可以表明,在没有核心蛋白的情况下,只有在成熟NS3中编码这些突变的RNA分子才会被包装。与这种选择性不同,宿主细胞中的一组结构蛋白可随时用于包装所有CSFV基因组。同样,包装所需的NS2-3-4A前体分子也可在中提供。因此,瘟病毒中的基因组包装由编码的成熟NS3控制。对作用蛋白的依赖限制了缺陷基因组的接受,并建立了包装特异性,而不考虑RNA序列特异性包装信号。了解NS3在瘟病毒基因组包装中的作用可能会揭示抗病毒治疗的新靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6e5/11852850/5abb13d71abb/jvi.01209-24.f001.jpg

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