Department of Biohealth Informatics, School of Informatics and Computing, Indiana University Purdue University, Indianapolis, IN, United States of America.
Centre for Functional Ecology, Department of Life Sciences, University of Coimbra, Coimbra, Portugal.
PLoS One. 2022 Sep 1;17(9):e0260331. doi: 10.1371/journal.pone.0260331. eCollection 2022.
SARS-CoV-2 has affected people worldwide as the causative agent of COVID-19. The virus is related to the highly lethal SARS-CoV-1 responsible for the 2002-2003 SARS outbreak in Asia. Research is ongoing to understand why both viruses have different spreading capacities and mortality rates. Like other beta coronaviruses, RNA-RNA interactions occur between different parts of the viral genomic RNA, resulting in discontinuous transcription and production of various sub-genomic RNAs. These sub-genomic RNAs are then translated into other viral proteins. In this work, we performed a comparative analysis for novel long-range RNA-RNA interactions that may involve the Spike region. Comparing in-silico fragment-based predictions between reference sequences of SARS-CoV-1 and SARS-CoV-2 revealed several predictions amongst which a thermodynamically stable long-range RNA-RNA interaction between (23660-23703 Spike) and (28025-28060 ORF8) unique to SARS-CoV-2 was observed. The patterns of sequence variation using data gathered worldwide further supported the predicted stability of the sub-interacting region (23679-23690 Spike) and (28031-28042 ORF8). Such RNA-RNA interactions can potentially impact viral life cycle including sub-genomic RNA production rates.
SARS-CoV-2 作为 COVID-19 的病原体,已在全球范围内影响人类。该病毒与导致 2002-2003 年亚洲 SARS 爆发的高度致命 SARS-CoV-1 有关。目前正在进行研究以了解为什么这两种病毒的传播能力和死亡率不同。与其他β冠状病毒一样,病毒基因组 RNA 的不同部分之间会发生 RNA-RNA 相互作用,导致不连续转录和产生各种亚基因组 RNA。这些亚基因组 RNA 随后被翻译为其他病毒蛋白。在这项工作中,我们对可能涉及 Spike 区域的新型长距离 RNA-RNA 相互作用进行了比较分析。在 SARS-CoV-1 和 SARS-CoV-2 的参考序列之间进行基于片段的计算预测比较,观察到了一种独特的 SARS-CoV-2 中(23660-23703 Spike)和(28025-28060 ORF8)之间的热力学稳定长距离 RNA-RNA 相互作用。使用全球范围内收集的数据进行的序列变异模式进一步支持了亚相互作用区域(23679-23690 Spike)和(28031-28042 ORF8)的预测稳定性。这种 RNA-RNA 相互作用可能会影响病毒的生命周期,包括亚基因组 RNA 的产生速率。