Engineering human/simian rotavirus VP7 reassortants in the absence of UTR sequence information

IF 3.9 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Roman Valusenko-Mehrkens, Reimar Johne, Alexander Falkenhagen
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引用次数: 0

Abstract

Recently developed plasmid-based reverse genetics systems for rotavirus A (RVA) enable rapid engineering of reassortants carrying human RVA antigens. However, complete genome segment sequences are required for successful generation of such reassortants, and sequencing of the untranslated regions (UTRs) of field strains is often not accomplished. To address this problem, we established a system that permits the generation of reassortants using only the open reading frame (ORF) nucleotide sequence information. Plasmids containing the VP7-ORF nucleotide sequence of six human RVA field strains (genotypes G2, G5, G8, G9, G12 and G29) derived from GenBank and flanked by the UTR sequences of simian RVA strain SA11 were constructed. Using these plasmids, four VP7 (G2, G5, G9 and G12) reassortants in an SA11 backbone were successfully generated. In contrast, the G8 and G29 reassortants were not viable. BLASTp search of the G8 and G29 sequences revealed an unusual amino acid substitution in each sequence, which was not present in related field strains. Site-directed reversion of the corresponding C656T mutation in G8 led to effective rescue of reassortant virus. However, reverting the G84C mutation in G29 did not result in replicating virus. The results suggest that most human RVA VP7 UTRs can be substituted with simian RVA UTRs. However, generation of reassortants might be impeded by potential sequencing errors or intrinsic reassortment limitations. The established system could help to broaden the antigenic repertoire for rapid engineering of potential novel RVA vaccine strains.

• Generation of diverse rotavirus vaccine strains is impeded by missing UTR sequences.

• UTRs from SA11 can be used instead of missing UTR sequences from field strains.

• Human RVA reassortants of genotypes G2, G5, G8, G9, G12 were successfully rescued.

缺乏UTR序列信息的人/猴轮状病毒VP7重组工程
最近开发的基于质粒的轮状病毒A (RVA)反向遗传系统使携带人类RVA抗原的重组基因快速工程。然而,这种重组的成功产生需要完整的基因组片段序列,而田间菌株的非翻译区(UTRs)的测序通常无法完成。为了解决这个问题,我们建立了一个系统,允许仅使用开放阅读框(ORF)核苷酸序列信息产生重组。构建了包含来自GenBank的6株人类RVA野株(基因型G2、G5、G8、G9、G12和G29) VP7-ORF核苷酸序列的质粒,并以类人猿RVA菌株SA11的UTR序列为侧翼。利用这些质粒,成功生成了SA11主干上的4个VP7 (G2、G5、G9和G12)重组体。相比之下,G8和G29的重组是不可行的。对G8和G29序列进行BLASTp搜索,发现每个序列都有不同寻常的氨基酸取代,这在相关菌株中不存在。对G8中相应的C656T突变进行定点逆转,有效地挽救了重组病毒。然而,恢复G29中的G84C突变不会导致病毒复制。结果表明,大多数人类RVA VP7 utr可以被猿类RVA utr替代。然而,重组的产生可能受到潜在的测序错误或内在的重组限制的阻碍。建立的系统有助于扩大抗原库,为潜在的新型RVA疫苗株的快速工程。•不同轮状病毒疫苗株的产生因缺少UTR序列而受到阻碍。•来自SA11的UTR序列可用于代替野外菌株缺失的UTR序列。•成功挽救了G2、G5、G8、G9、G12基因型的人类RVA重组基因。
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来源期刊
Applied Microbiology and Biotechnology
Applied Microbiology and Biotechnology 工程技术-生物工程与应用微生物
CiteScore
10.00
自引率
4.00%
发文量
535
审稿时长
2 months
期刊介绍: Applied Microbiology and Biotechnology focusses on prokaryotic or eukaryotic cells, relevant enzymes and proteins; applied genetics and molecular biotechnology; genomics and proteomics; applied microbial and cell physiology; environmental biotechnology; process and products and more. The journal welcomes full-length papers and mini-reviews of new and emerging products, processes and technologies.
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