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首页> 外文期刊>BMC Evolutionary Biology >Correlation between sequence conservation and structural thermodynamics of microRNA precursors from human, mouse, and chicken genomes
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Correlation between sequence conservation and structural thermodynamics of microRNA precursors from human, mouse, and chicken genomes

机译:人类,小鼠和鸡基因组microRNA前体的序列保守性与结构热力学之间的相关性

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Background Previous studies have shown that microRNA precursors (pre-miRNAs) have considerably more stable secondary structures than other native RNAs (tRNA, rRNA, and mRNA) and artificial RNA sequences. However, pre-miRNAs with ultra stable secondary structures have not been investigated. It is not known if there is a tendency in pre-miRNA sequences towards or against ultra stable structures? Furthermore, the relationship between the structural thermodynamic stability of pre-miRNA and their evolution remains unclear. Results We investigated the correlation between pre-miRNA sequence conservation and structural stability as measured by adjusted minimum folding free energies in pre-miRNAs isolated from human, mouse, and chicken. The analysis revealed that conserved and non-conserved pre-miRNA sequences had structures with similar average stabilities. However, the relatively ultra stable and unstable pre-miRNAs were more likely to be non-conserved than pre-miRNAs with moderate stability. Non-conserved pre-miRNAs had more G+C than A+U nucleotides, while conserved pre-miRNAs contained more A+U nucleotides. Notably, the U content of conserved pre-miRNAs was especially higher than that of non-conserved pre-miRNAs. Further investigations showed that conserved and non-conserved pre-miRNAs exhibited different structural element features, even though they had comparable levels of stability. Conclusions We proposed that there is a correlation between structural thermodynamic stability and sequence conservation for pre-miRNAs from human, mouse, and chicken genomes. Our analyses suggested that pre-miRNAs with relatively ultra stable or unstable structures were less favoured by natural selection than those with moderately stable structures. Comparison of nucleotide compositions between non-conserved and conserved pre-miRNAs indicated the importance of U nucleotides in the pre-miRNA evolutionary process. Several characteristic structural elements were also detected in conserved pre-miRNAs.
机译:背景技术先前的研究表明,microRNA前体(pre-miRNA)具有比其他天然RNA(tRNA,rRNA和mRNA)和人工RNA序列稳定得多的二级结构。但是,尚未研究具有超稳定二级结构的pre-miRNA。目前尚不清楚pre-miRNA序列是否倾向于或反对超稳定结构?此外,pre-miRNA的结构热力学稳定性与其进化之间的关系仍然不清楚。结果我们研究了pre-miRNA序列保守性与结构稳定性之间的相关性,该相关性是通过从人,小鼠和鸡中分离的pre-miRNA的最小折叠折叠自由能进行测量的。分析显示保守和非保守的pre-miRNA序列具有平均稳定性相似的结构。但是,相对超稳定和不稳定的pre-miRNA比具有中等稳定性的pre-miRNA更有可能是非保守的。非保守的pre-miRNA具有比A + U核苷酸更多的G + C,而保守的pre-miRNA包含更多的A + U核苷酸。值得注意的是,保守的pre-miRNA的U含量尤其高于非保守的pre-miRNA。进一步的研究表明,保守的和非保守的pre-miRNA表现出不同的结构元件特征,即使它们具有相当的稳定性水平。结论我们提出人,小鼠和鸡基因组的pre-miRNA的结构热力学稳定性和序列保守性之间存在相关性。我们的分析表明,具有相对超稳定或不稳定结构的pre-miRNA比具有中等稳定结构的pre-miRNA受到自然选择的青睐。比较非保守和保守的pre-miRNA的核苷酸组成,可以看出U核苷酸在pre-miRNA进化过程中的重要性。在保守的pre-miRNA中还检测到一些特征性结构元件。

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