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Thermodynamic and phylogenetic prediction of RNA secondary structures in the coding region of hepatitis C virus.

机译:丙型肝炎病毒编码区RNA二级结构的热力学和系统发育预测。

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摘要

The existence and functional importance of RNA secondary structure in the replication of positive-stranded RNA viruses is increasingly recognized. We applied several computational methods to detect RNA secondary structure in the coding region of hepatitis C virus (HCV), including thermodynamic prediction, calculation of free energy on folding, and a newly developed method to scan sequences for covariant sites and associated secondary structures using a parsimony-based algorithm. Each of the prediction methods provided evidence for complex RNA folding in the core- and NS5B-encoding regions of the genome. The positioning of covariant sites and associated predicted stem-loop structures coincided with thermodynamic predictions of RNA base pairing, and localized precisely in parts of the genome with marked suppression of variability at synonymous sites. Combined, there was evidence for a total of six evolutionarily conserved stem-loop structures in the NS5B-encoding region and two in the core gene. The virus most closely related to HCV, GB virus-B (GBV-B) also showed evidence for similar internal base pairing in its coding region, although predictions of secondary structures were limited by the absence of comparative sequence data for this virus. While the role(s) of stem-loops in the coding region of HCV and GBV-B are currently unknown, the structure predictions in this study could provide the starting point for functional investigations using recently developed self-replicating clones of HCV.
机译:正链RNA病毒复制中RNA二级结构的存在和功能重要性日益得到认可。我们应用了几种计算方法来检测丙型肝炎病毒(HCV)编码区中的RNA二级结构,包括热力学预测,折叠时自由能的计算,以及一种新开发的方法来扫描序列的协变位点和相关二级结构,使用基于简约的算法。每种预测方法都提供了在基因组的核心和NS5B编码区域中进行复杂RNA折叠的证据。协变位点和相关的预测茎-环结构的定位与RNA碱基配对的热力学预测相吻合,并精确地定位在基因组的部分区域中,同义位点的变异性受到明显抑制。结合在一起,有证据表明在NS5B编码区共有6个进化保守的茎环结构,在核心基因中有2个。与HCV最密切相关的病毒GB病毒B(GBV-B)也显示出在其编码区存在相似的内部碱基配对的证据,尽管对二级结构的预测由于缺乏该病毒的比较序列数据而受到限制。尽管目前尚不清楚茎环在HCV和GBV-B编码区中的作用,但本研究中的结构预测可以为使用最近开发的HCV自复制克隆的功能研究提供起点。

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