State Key Laboratory of Virology, College of Life Sciences, Wuhan University, Wuhan 430072, China.
Viruses. 2021 Aug 2;13(8):1523. doi: 10.3390/v13081523.
The 3'untranslated region (3'UTR) and NS5B of classical swine fever virus (CSFV) play vital roles in viral genome replication. In this study, two chimeric viruses, vC/SM3'UTR and vC/b3'UTR, with 3'UTR substitution of CSFV Shimen strain or bovine viral diarrhea virus (BVDV) NADL strain, were constructed based on the infectious cDNA clone of CSFV vaccine C strain, respectively. After virus rescue, each recombinant chimeric virus was subjected to continuous passages in PK-15 cells. The representative passaged viruses were characterized and sequenced. Serial passages resulted in generation of mutations and the passaged viruses exhibited significantly increased genomic replication efficiency and infectious virus production compared to parent viruses. A proline to threonine mutation at position 162 of NS5B was identified in both passaged vC/SM3'UTR and vC/b3'UTR. We generated P162T mutants of two chimeras using the reverse genetics system, separately. The single P162T mutation in NS5B of vC/SM3'UTR or vC/b3'UTR played a key role in increased viral genome replication and infectious virus production. The P162T mutation increased vC/SM3'UTR replication in rabbits. From RNA-dependent RNA polymerase (RdRp) assays in vitro, the NS5B containing P162T mutation (NS5B) exhibited enhanced RdRp activity for different RNA templates. We further identified that the enhanced RdRp activity originated from increased initiation efficiency of RNA synthesis. These findings revealed a novel function for the NS5B residue 162 in modulating replication.
猪瘟病毒(CSFV)的 3'非翻译区(3'UTR)和 NS5B 在病毒基因组复制中起着至关重要的作用。在本研究中,基于 CSFV 疫苗 C 株的感染性 cDNA 克隆,分别构建了具有 CSFV 石门株或牛病毒性腹泻病毒(BVDV)NADL 株 3'UTR 替换的两种嵌合病毒 vC/SM3'UTR 和 vC/b3'UTR。病毒拯救后,将每个重组嵌合病毒在 PK-15 细胞中连续传代。对代表性传代病毒进行了特征和测序。连续传代会产生突变,与亲本病毒相比,传代病毒的基因组复制效率和感染性病毒产量显著提高。在两个传代的 vC/SM3'UTR 和 vC/b3'UTR 中,均在 NS5B 的第 162 位发现脯氨酸到苏氨酸的突变。我们分别使用反向遗传学系统生成了两个嵌合体的 P162T 突变体。vC/SM3'UTR 或 vC/b3'UTR 中 NS5B 的单个 P162T 突变在增加病毒基因组复制和感染性病毒产生方面起着关键作用。P162T 突变增加了 vC/SM3'UTR 在兔体内的复制。从体外 RNA 依赖性 RNA 聚合酶(RdRp)测定中,含有 P162T 突变的 NS5B(NS5B)显示出对不同 RNA 模板的增强的 RdRp 活性。我们进一步确定,增强的 RdRp 活性源自 RNA 合成起始效率的提高。这些发现揭示了 NS5B 残基 162 在调节复制中的新功能。