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RNA genome conservation and secondary structure in SARS-CoV-2 and SARS-related viruses: a first look

机译:SARS-COV-2和SARS相关病毒中的RNA基因组保护和二级结构:第一次看

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摘要

As the COVID-19 outbreak spreads, there is a growing need for a compilation of conserved RNA genome regions in the SARS-CoV-2 virus along with their structural propensities to guide development of antivirals and diagnostics. Here we present a first look at RNA sequence conservation and structural propensities in the SARS-CoV-2 genome. Using sequence alignments spanning a range of betacoronaviruses, we rank genomic regions by RNA sequence conservation, identifying 79 regions of length at least 15 nt as exactly conserved over SARS-related complete genome sequences available near the beginning of the COVID-19 outbreak. We then confirm the conservation of the majority of these genome regions across 739 SARS-CoV-2 sequences subsequently reported from the COVID-19 outbreak, and we present a curated list of 30 “SARS-related-conserved” regions. We find that known RNA structured elements curated as Rfam families and in prior literature are enriched in these conserved genome regions, and we predict additional conserved, stable secondary structures across the viral genome. We provide 106 “SARS-CoV-2-conserved-structured” regions as potential targets for antivirals that bind to structured RNA. We further provide detailed secondary structure models for the extended 5′ UTR, frameshifting stimulation element, and 3′ UTR. Lastly, we predict regions of the SARS-CoV-2 viral genome that have low propensity for RNA secondary structure and are conserved within SARS-CoV-2 strains. These 59 “SARS-CoV-2-conserved-unstructured” genomic regions may be most easily accessible by hybridization in primer-based diagnostic strategies.
机译:随着Covid-19爆发传播,越来越需要汇编SARS-COV-2病毒中的保守RNA基因组区域以及它们的结构性促使导向抗病毒和诊断的发展。在这里,我们展示了SARS-COV-2基因组中的RNA序列守恒和结构性的第一眼。使用跨越一系列βancorOnaviruses的序列比对,我们通过RNA序列守恒来抑制基因组区域,鉴定在Covid-19爆发开始时可用的SARS相关的完整基因组序列的79个长度至少15nt的长度至少15nt。然后,我们确认跨越Covid-19爆发报告的739 SARS-COV-2序列中这些基因组区域的大多数这些基因组区域的保护,我们提出了30个“SARS相关保守”区域的策划清单。我们发现已知的RNA结构化元素作为RFAM系列和现有文献浓密,在这些保守的基因组区域中富集,并且我们预测了在病毒基因组上的额外保守的稳定的二次结构。我们提供106“SARS-COV-2保守结构”区域,作为抗病毒的潜在目标,其与结构化RNA结合。我们进一步为延伸的5'UTR,框架刺激元件和3'UTR提供了详细的二级结构模型。最后,我们预测SARS-COV-2病毒基因组的区域,该病毒基因组具有低对RNA二级结构倾向并且在SARS-COV-2菌株内保守。这些59“SARS-COV-2保守 - 非结构化”基因组区域可以通过杂交在基于引物的诊断策略中杂交来获得。

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