同义密码子偏置对甲型流感病毒RNA二级结构的影响

Ruifang Li, Zhifen Yu, Qiao Huang, Chunyang Guo, Xue Li
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摘要

选取a型流感病毒作为样本。然后,分析了同义密码子偏差与mRNA二级结构的关系。本研究结果将为进一步研究甲型流感病毒的同义密码子和RNA特性提供理论依据。收集了国家生物技术信息中心所有甲型流感病毒的核酸序列信息。对每个核酸序列的二级结构进行了预测。然后计算RNA的环结构、茎结构和自由复制能。基于这些信息,计算出了RNA的特异性柔韧性。同时,计算每个核酸序列的同义密码子偏倚。建立了甲型流感病毒RNA二级结构数据库。然后,分析了同义密码子偏置与环结构、茎结构和柔韧性的关系。50%氨基酸的密码子使用率与茎结构或环结构含量显著相关。60%的氨基酸与平均单位折叠自由能显著相关。此外,50%氨基酸密码子的使用与RNA的特异性柔韧性显著相关。对于与茎结构和环结构显著相关的密码子,其使用与两种结构含量的相关性完全相反,特异柔韧性与同义密码子偏差的相关性优于其他参数。这些结果表明,同义密码子使用偏差对RNA二级结构有重要影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Influence of Synonymous Codon Bias on the RNA Secondary Structure in Influenza-A Viruses].

Influenza-A viruses were selected as samples. Then, the relationship between synonymous codon bias and mRNA secondary structures was analyzed. Our data will provide a theoretical basis for further research on the synonymous codon and RNA properties of the influenza-A virus. Information on the nucleic-acid sequence of all influenza-A viruses in the National Center for Biotechnology Information was collected. The secondary structure of each nucleic-acid sequence was predicted. Then, the loop structure, stem structure, and free replicating energy of RNA were calculated. Based on this information, the specific flexibility of RNA was worked out. Simultaneously, the synonymous codon bias in each nucleic-acid sequence was counted. A database on the RNA secondary structure of the influenza-A virus was set up. Then, the relationship between the synonymous codon bias and the content of loop structure, stem structure, and flexibility were analyzed.Codon usage of 50% of amino acids was correlated significantly with the content of stem structure or the content of loop structure.Also,60% of amino acids were correlated significantly with average unit folding free energy. In addition, codon usage of 50% of amino acids was correlated significantly with the specific flexibility of RNA. For codons that were correlated significantly with stem structure and loop structure, the correlation between their usage with two types of structural content was completely contrary .Also, the correlation between specific flexibility with synonymous codon bias was better than that observed for other parameters. These results suggest that synonymous codon usage bias has important influences on RNA secondary structure.

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