分析非编码RNA序列MFE的新方法

Tina P. George, T. Thomas
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引用次数: 2

摘要

在过去的几十年里,对不同基因组的研究提供了大量关于非编码RNA的信息,基因组研究已经成为以非编码RNA (ncRNA)为中心的研究。ncRNA的功能是由其二级结构决定的,在整个生物体中,二级结构比序列本身更为保守。本研究基于热力学最近邻模型找到了ncRNA的最佳二级结构或最小自由能(MFE)结构。从ncRNA序列的信号特性出发,分析了2600多个ncRNA序列的MFE。在分析的四类ncRNA中,发现了将MFE与信号特性联系起来的数学模型。用所提出的模型计算的MFE值与在标准web服务器上得到的结果一致。共有95%的分析序列的MFE值相对于从标准web服务器获得的数据偏差在±15%以内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Novel Approach to Analyzing MFE of Noncoding RNA Sequences
Genomic studies have become noncoding RNA (ncRNA) centric after the study of different genomes provided enormous information on ncRNA over the past decades. The function of ncRNA is decided by its secondary structure, and across organisms, the secondary structure is more conserved than the sequence itself. In this study, the optimal secondary structure or the minimum free energy (MFE) structure of ncRNA was found based on the thermodynamic nearest neighbor model. MFE of over 2600 ncRNA sequences was analyzed in view of its signal properties. Mathematical models linking MFE to the signal properties were found for each of the four classes of ncRNA analyzed. MFE values computed with the proposed models were in concordance with those obtained with the standard web servers. A total of 95% of the sequences analyzed had deviation of MFE values within ±15% relative to those obtained from standard web servers.
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