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携带不同P1基因的重组B型肠道病毒在柯萨奇病毒B5复制骨架中的高效复制。

Efficient replication of recombinant Enterovirus B types, carrying different P1 genes in the coxsackievirus B5 replicative backbone.

作者信息

Jonsson Nina, Sävneby Anna, Gullberg Maria, Evertsson Kim, Klingel Karin, Lindberg A Michael

机构信息

Department of Chemistry and Biomedical Sciences, Linnaeus University, Kalmar, Sweden.

出版信息

Virus Genes. 2015 Jun;50(3):351-7. doi: 10.1007/s11262-015-1177-x. Epub 2015 Feb 8.

Abstract

Recombination is an important feature in the evolution of the Enterovirus genus. Phylogenetic studies of enteroviruses have revealed that the capsid genomic region (P1) is type specific, while the parts of the genome coding for the non-structural proteins (P2-P3) are species specific. Hence, the genome may be regarded as consisting of two modules that evolve independently. In this study, it was investigated whether the non-structural coding part of the genome in one type could support replication of a virus with a P1 region from another type of the same species. A cassette vector (pCas) containing a full-length cDNA copy of coxsackievirus B5 (CVB5) was used as a replicative backbone. The P1 region of pCas was replaced with the corresponding part from coxsackievirus B3 Nancy (CVB3N), coxsackievirus B6 Schmitt (CVB6S), and echovirus 7 Wallace (E7W), all members of the Enterovirus B species. The replication efficiency after transfection with clone-derived in vitro transcribed RNA was studied and compared with that of pCas. All the recombinant viruses replicated with similar efficiencies and showed threshold cycle (Ct) values, tissue culture infectivity dose 50 %, and plaque-forming unit titers comparable to viruses generated from the pCas construct. In addition to this, a clone without the P1 region was also constructed, and Western Blot and immunofluorescence staining analysis showed that the viral genome could be translated and replicated despite the lack of the structural protein-coding region. To conclude, the replicative backbone of the CVB5 cassette vector supports replication of intraspecies constructs with P1 regions derived from other members of the Enterovirus B species. In addition to this, the replicative backbone can be both translated and replicated without the presence of a P1 region.

摘要

重组是肠道病毒属进化中的一个重要特征。对肠道病毒的系统发育研究表明,衣壳基因组区域(P1)具有型特异性,而编码非结构蛋白的基因组部分(P2 - P3)具有种特异性。因此,基因组可被视为由两个独立进化的模块组成。在本研究中,研究了一种类型的基因组非结构编码部分是否能够支持具有来自同一物种另一种类型的P1区域的病毒的复制。含有柯萨奇病毒B5(CVB5)全长cDNA拷贝的盒式载体(pCas)被用作复制骨架。pCas的P1区域被来自柯萨奇病毒B3南希株(CVB3N)、柯萨奇病毒B6施密特株(CVB6S)和埃可病毒7华莱士株(E7W)的相应部分所取代,这三种病毒均为肠道病毒B种的成员。研究了用克隆衍生的体外转录RNA转染后的复制效率,并与pCas的复制效率进行比较。所有重组病毒的复制效率相似,并且显示出与从pCas构建体产生的病毒相当的阈值循环(Ct)值、组织培养感染剂量50%以及空斑形成单位滴度。除此之外,还构建了一个没有P1区域的克隆,蛋白质免疫印迹和免疫荧光染色分析表明,尽管缺乏结构蛋白编码区域,病毒基因组仍可进行翻译和复制。总之,CVB5盒式载体的复制骨架支持具有来自肠道病毒B种其他成员的P1区域的种内构建体的复制。此外,在没有P1区域的情况下,复制骨架也可以进行翻译和复制。

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