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蜱传、昆虫特异且无已知媒介的黄病毒 3'UTR 中的功能 RNA 结构。

Functional RNA Structures in the 3'UTR of Tick-Borne, Insect-Specific and No-Known-Vector Flaviviruses.

机构信息

Department of Theoretical Chemistry, University of Vienna, Währingerstraße 17, 1090 Vienna, Austria.

Research Group BCB, Faculty of Computer Science, University of Vienna, Währingerstraße 29, 1090 Vienna, Austria.

出版信息

Viruses. 2019 Mar 24;11(3):298. doi: 10.3390/v11030298.

Abstract

Untranslated regions (UTRs) of flaviviruses contain a large number of RNA structural elements involved in mediating the viral life cycle, including cyclisation, replication, and encapsidation. Here we report on a comparative genomics approach to characterize evolutionarily conserved RNAs in the 3 ' UTR of tick-borne, insect-specific and no-known-vector flaviviruses in silico. Our data support the wide distribution of previously experimentally characterized exoribonuclease resistant RNAs (xrRNAs) within tick-borne and no-known-vector flaviviruses and provide evidence for the existence of a cascade of duplicated RNA structures within insect-specific flaviviruses. On a broader scale, our findings indicate that viral 3 ' UTRs represent a flexible scaffold for evolution to come up with novel xrRNAs.

摘要

未翻译区(UTR)的黄病毒含有大量的 RNA 结构元件,参与介导病毒的生命周期,包括环化、复制和包装。在这里,我们报告了一种比较基因组学方法,用于在计算机上对蜱传、昆虫特异性和无已知载体的黄病毒的 3'UTR 中的进化保守 RNA 进行特征描述。我们的数据支持了先前在实验中表征的抗外切核酸酶 RNA(xrRNA)在蜱传和无已知载体黄病毒中的广泛分布,并为昆虫特异性黄病毒中存在级联复制 RNA 结构提供了证据。更广泛地说,我们的发现表明病毒 3'UTR 代表了一个灵活的支架,进化可以从中产生新的 xrRNA。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9fc/6466055/d7d8b7445146/viruses-11-00298-g001.jpg

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