首页> 美国卫生研究院文献>PLoS Pathogens >Evolution and Emergence of Enteroviruses through Intra- and Inter-species Recombination: Plasticity and Phenotypic Impact of Modular Genetic Exchanges in the 5’ Untranslated Region
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Evolution and Emergence of Enteroviruses through Intra- and Inter-species Recombination: Plasticity and Phenotypic Impact of Modular Genetic Exchanges in the 5’ Untranslated Region

机译:通过种内和种间重组的肠病毒的进化和出现:5非翻译区的模块化遗传交换的可塑性和表型影响。

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摘要

Genetic recombination shapes the diversity of RNA viruses, including enteroviruses (EVs), which frequently have mosaic genomes. Pathogenic circulating vaccine-derived poliovirus (cVDPV) genomes consist of mutated vaccine poliovirus (PV) sequences encoding capsid proteins, and sequences encoding nonstructural proteins derived from other species’ C EVs, including certain coxsackieviruses A (CV-A) in particular. Many cVDPV genomes also have an exogenous 5’ untranslated region (5’ UTR). This region is involved in virulence and includes the cloverleaf (CL) and the internal ribosomal entry site, which play major roles in replication and the initiation of translation, respectively. We investigated the plasticity of the PV genome in terms of recombination in the 5’ UTR, by developing an experimental model involving the rescue of a bipartite PV/CV-A cVDPV genome rendered defective by mutations in the CL, following the co-transfection of cells with 5’ UTR RNAs from each of the four human EV species (EV-A to -D). The defective cVDPV was rescued by recombination with 5’ UTR sequences from the four EV species. Homologous and nonhomologous recombinants with large deletions or insertions in three hotspots were isolated, revealing a striking plasticity of the 5’ UTR. By contrast to the recombination of the cVDPV with the 5’ UTR of group II (EV-A and -B), which can decrease viral replication and virulence, recombination with the 5’ UTRs of group I (EV-C and -D) appeared to be evolutionarily neutral or associated with a gain in fitness. This study illustrates how the genomes of positive-strand RNA viruses can evolve into mosaic recombinant genomes through intra- or inter-species modular genetic exchanges, favoring the emergence of new recombinant lineages.
机译:遗传重组改变了RNA病毒的多样性,包括肠道病毒(EVs),这些病毒通常具有镶嵌基因组。病原性循环疫苗衍生脊髓灰质炎病毒(cVDPV)基因组由编码衣壳蛋白的突变疫苗脊髓灰质炎病毒(PV)序列,以及编码衍生自其他物种C EV的非结构蛋白的序列组成,尤其是某些柯萨奇病毒A(CV-A)。许多cVDPV基因组还具有外源5'非翻译区(5'UTR)。该区域涉及毒力,包括苜蓿叶(CL)和内部核糖体进入位点,它们分别在复制和翻译起始中起主要作用。我们通过开发一个实验模型来研究PV基因组在5'UTR中重组的可塑性,该模型涉及抢救因CL突变而导致CL突变而导致缺陷的二分PV / CV-A cVDPV基因组。 4种人类EV物种(EV-A至-D)中的每一种均具有5'UTR RNA的细胞。通过重组来自四个EV物种的5'UTR序列,挽救了有缺陷的cVDPV。分离出在三个热点中具有大缺失或插入的同源和非同源重组体,表明5'UTR具有惊人的可塑性。与cVDPV与II组(EV-A和-B)的5'UTR重组相反,后者可以减少病毒复制和毒力,而与I组(EV-C和-D)的5'UTR重组似乎在进化上是中立的,或者与体适能增加有关。这项研究说明了正链RNA病毒的基因组如何通过种内或种间模块化遗传交换演化为镶嵌重组基因组,从而有利于新的重组谱系的出现。

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