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A sensitivity analysis of RNA folding nearest neighbor parameters identifies a subset of free energy parameters with the greatest impact on RNA secondary structure prediction

机译:RNA折叠最近邻参数的敏感性分析确定了对RNA二级结构预测影响最大的自由能参数子集

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摘要

Nearest neighbor parameters for estimating the folding energy changes of RNA secondary structures are used in structure prediction and analysis. Despite their widespread application, a comprehensive analysis of the impact of each parameter on the precision of calculations had not been conducted. To identify the parameters with greatest impact, a sensitivity analysis was performed on the 291 parameters that compose the 2004 version of the free energy nearest neighbor rules. Perturbed parameter sets were generated by perturbing each parameter independently. Then the effect of each individual parameter change on predicted base-pair probabilities and secondary structures as compared to the standard parameter set was observed for a set of sequences including structured ncRNA, mRNA and randomized sequences. The results identify for the first time the parameters with the greatest impact on secondary structure prediction, and the subset which should be prioritized for further study in order to improve the precision of structure prediction. In particular, bulge loop initiation, multibranch loop initiation, AU/GU internal loop closure and AU/GU helix end parameters were particularly important. An analysis of parameter usage during folding free energy calculations of stochastic samples of secondary structures revealed a correlation between parameter usage and impact on structure prediction precision.
机译:用于预测RNA二级结构折叠能量变化的最近邻参数用于结构预测和分析。尽管应用广泛,但尚未对每个参数对计算精度的影响进行全面分析。为了确定影响最大的参数,对构成2004年版本的自由能最近邻规则的291个参数进行了敏感性分析。通过独立地扰动每个参数来生成扰动的参数集。然后,对于包括结构化ncRNA,mRNA和随机序列在内的一系列序列,观察到与标准参数集相比,每个单独参数变化对预测碱基对概率和二级结构的影响。结果首次确定了对二级结构预测影响最大的参数,以及应优先考虑的子集,以提高结构预测的精度。特别是,凸出的循环起始,多分支的循环起始,AU / GU内部循环闭合和AU / GU螺旋末端参数特别重要。对二级结构随机样本的折叠自由能计算中的参数用法分析表明,参数用法与对结构预测精度的影响之间存在相关性。

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