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Bunyamwera virus can repair both insertions and deletions during RNA replication.

机译:Bunyamwera病毒可以在RNA复制过程中修复插入和缺失。

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摘要

The genomic termini of RNA viruses contain essential cis-acting signals for such diverse functions as packaging, genome translation, mRNA transcription, and RNA replication, and thus preservation of their sequence integrity is critical for virus viability. Sequence alteration can arise due to cellular mechanisms that add or remove nucleotides from terminal regions, or, alternatively, from introduction of sequence errors through nucleotide misincorporation by the error-prone viral RNA-dependent RNA polymerase (RdRp). To preserve template function, many RNA viruses utilize repair mechanisms to prevent accumulation of terminal alterations. Here we show that Bunyamwera virus (BUNV), the prototype of the Bunyaviridae family of segmented negative-sense RNA viruses, also can repair its genomic termini. When an intact nontranslated region (NTR) was added to the anti-genomic 3' end, it was precisely removed, to restore both length and RNA synthesis function of the wild-type template. Furthermore, when nucleotides were removed from the anti-genome 3' end, and replaced with a duplicate and intact NTR, both the external NTR were removed, and the missing nucleotides were restored, thus, indicating that the BUNV RdRp can both remove and add nucleotides to the template. We show that the mechanism for repair of terminal extensions is likely that of internal entry of the viral RdRp during genome synthesis. Possible mechanisms for repair of terminal deletions are discussed.
机译:RNA病毒的基因组末端包含必不可少的顺式作用信号,用于包装,基因组翻译,mRNA转录和RNA复制等多种功能,因此保留其序列完整性对于病毒的生存能力至关重要。序列改变可能是由于从末端区域添加或去除核苷酸的细胞机制引起的,或者是由于容易出错的病毒依赖RNA的RNA聚合酶(RdRp)通过核苷酸错误掺入而引入了序列错误。为了保留模板功能,许多RNA病毒利用修复机制来防止末端改变的积累。在这里,我们显示了Bunyamwera病毒(BUNV),它是分段负义RNA病毒的Bunyaviridae家族的原型,也可以修复其基因组末端。当将完整的非翻译区(NTR)添加到抗基因组3'末端时,将其精确去除,以恢复野生型模板的长度和RNA合成功能。此外,当从抗基因组3'末端去除核苷酸,并用重复且完整的NTR代替时,外部的NTR均被去除,缺失的核苷酸也得以恢复,因此,表明BUNV RdRp既可以去除也可以添加模板的核苷酸。我们表明,修复末端延伸的机制很可能是基因组合成过程中病毒RdRp内部进入的机制。讨论了修复末端缺失的可能机制。

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  • 来源
    《RNA》 |2010年第6期|共8页
  • 作者

    Walter CT; Barr JN;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 核酸;
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