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Structural and functional conservation of cis-acting RNA elements in coronavirus 5 '-terminal genome regions

机译:冠状病毒5' - 终端基因组区CIS作用RNA元素的结构和功能措施

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摘要

Structure predictions suggest a partial conservation of RNA structure elements in coronavirus terminal genome regions. Here, we determined the structures of stem-loops (SL) 1 and 2 of two alphacoronaviruses, human coronavirus (HCoV) 229E and NL63, by RNA structure probing and studied the functional relevance of these putative cis-acting elements. HCoV-229E SL1 and SL2 mutants generated by reverse genetics were used to study the effects on viral replication of single-nucleotide substitutions predicted to destabilize the SL1 and SL2 structures. The data provide conclusive evidence for the critical role of SL1 and SL2 in HCoV-229E replication and, in some cases, revealed parallels with previously characterized betacoronavirus SL1 and SL2 elements. Also, we were able to rescue viable HCoV-229E mutants carrying replacements of SL2 with equivalent betacoronavirus structural elements. The data obtained in this study reveal a remarkable degree of structural and functional conservation of 5'-terminal RNA structural elements across coronavirus genus boundaries.
机译:结构预测表明冠状病毒末端基因组区域中RNA结构元素的部分守恒。这里,通过RNA结构探测确定两种αAviroAviruses,人冠状病毒(HCOV)和N163的茎环(SL)1和2的结构的结构,并研究了这些推定的顺式作用元件的功能相关性。通过反向遗传学产生的HcoV-229E SL1和SL2突变体用于研究预测SL1和SL2结构的单核苷酸取代的单核苷酸取代的病毒复制的影响。该数据提供了SL1和SL2在HCOV-229E复制中的关键作用的确定证据,并且在某些情况下,具有先前表征的BetacoronaVirus SL1和SL2元件的平相。此外,我们能够拯救携带SL2的替代品的可行HCOV-229E突变体,其具有当量的βancoronaVirus结构元素。本研究中获得的数据揭示了在冠状病毒基因界面的5'-末端RNA结构元素的显着结构和功能守恒程度。

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