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在持续性牛冠状病毒感染期间鉴定出一种无领导的基因组与基因表达衰减有关。

A leaderless genome identified during persistent bovine coronavirus infection is associated with attenuation of gene expression.

机构信息

Institute of Pathobiology, College of Veterinary Medicine, National Chung-Hsing University, Taichung, Taiwan ROC.

出版信息

PLoS One. 2013 Dec 12;8(12):e82176. doi: 10.1371/journal.pone.0082176. eCollection 2013.

Abstract

The establishment of persistent viral infection is often associated with the selection of one or more mutant viruses. For example, it has been found that an intraleader open reading frame (ORF) in genomic and subgenomic mRNA (sgmRNA) molecules is selected during bovine coronavirus (BCoV) persistence which leads to translation attenuation of the downstream ORF. Here, we report the unexpected identification of leaderless genomes, in addition to leader-containing genomes, in a cell culture persistently infected with BCoV. The discovery was made by using a head-to-tail ligation method that examines genomic 5'-terminal sequences at different times postinfection. Functional analyses of the leaderless genomic RNA in a BCoV defective interfering (DI) RNA revealed that (1) the leaderless genome was able to serve as a template for the synthesis of negative-strand genome, although it cannot perform replicative positive-strand genomic RNA synthesis, and (2) the leaderless genome retained its function in translation and transcription, although the efficiency of these processes was impaired. Therefore, this previously unidentified leaderless genome is associated with the attenuation of genome expression. Whether the leaderless genome contributes to the establishment of persistent infection remains to be determined.

摘要

持续性病毒感染的建立通常与一个或多个突变病毒的选择有关。例如,已经发现,牛冠状病毒(BCoV)持续性感染过程中,基因组和亚基因组 mRNA(sgmRNA)分子中的内部先导开放阅读框(ORF)被选择,导致下游 ORF 的翻译衰减。在这里,我们报告了在持续感染 BCoV 的细胞培养物中除了包含先导序列的基因组外,还意外鉴定到了无先导序列的基因组。这一发现是通过使用一种从头至尾的连接方法,在感染后不同时间检查基因组 5'-末端序列而得出的。对 BCoV 缺陷干扰(DI)RNA 中的无先导基因组 RNA 的功能分析表明:(1)无先导基因组能够作为负链基因组合成的模板,尽管它不能进行复制性正链基因组 RNA 合成;(2)无先导基因组在翻译和转录过程中保留了其功能,尽管这些过程的效率受到了损害。因此,这种以前未被识别的无先导基因组与基因组表达的衰减有关。无先导基因组是否有助于持续性感染的建立还有待确定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a59/3861326/17c960ef8983/pone.0082176.g001.jpg

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