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Probing of RNA structures in a positive sense RNA virus reveals selection pressures for structural elements

机译:积极检测RNA结构RNA病毒揭示了结构元件的选择压力

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摘要

In single stranded (+)-sense RNA viruses, RNA structural elements (SEs) play essential roles in the infection process from replication to encapsidation. Using selective 2′-hydroxyl acylation analyzed by primer extension sequencing (SHAPE-Seq) and covariation analysis, we explore the structural features of the third genome segment of cucumber mosaic virus (CMV), RNA3 (2216 nt), both in vitro and in plant cell lysates. Comparing SHAPE-Seq and covariation analysis results revealed multiple SEs in the coat protein open reading frame and 3′ untranslated region. Four of these SEs were mutated and serially passaged in Nicotiana tabacum plants to identify biologically selected changes to the original mutated sequences. After passaging, loop mutants showed partial reversion to their wild-type sequence and SEs that were structurally disrupted by mutations were restored to wild-type-like structures via synonymous mutations in planta. These results support the existence and selection of virus open reading frame SEs in the host organism and provide a framework for further studies on the role of RNA structure in viral infection. Additionally, this work demonstrates the applicability of high-throughput chemical probing in plant cell lysates and presents a new method for calculating SHAPE reactivities from overlapping reverse transcriptase priming sites.
机译:在单链(+)有义RNA病毒中,RNA结构元件(SE)在从复制到衣壳化的感染过程中起着至关重要的作用。使用通过引物延伸测序(SHAPE-Seq)和协变分析分析的选择性2'-羟基酰化,我们研究了黄瓜花叶病毒(CMV),RNA3(2216 nt)的第三个基因组片段的结构特征,包括体内和体外植物细胞裂解物。比较SHAPE-Seq和协变量分析结果,发现外壳蛋白开放阅读框和3'非翻译区中有多个SE。将这些SE中的四个SE突变并在烟草植物中连续传代,以鉴定对原始突变序列的生物学选择变化。经过传代后,环状突变体显示出部分回复至其野生型序列,并且通过植物中的同义突变将被突变结构破坏的SEs恢复为野生型结构。这些结果支持宿主生物中病毒开放阅读框SE的存在和选择,并为进一步研究RNA结构在病毒感染中的作用提供了框架。此外,这项工作证明了高通量化学探测在植物细胞裂解物中的适用性,并提出了一种从重叠的逆转录酶引发位点计算SHAPE反应性的新方法。

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