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Exons and introns characterization in nucleic acid sequences by time-frequency analysis

机译:通过时频分析表征核酸序列中的外显子和内含子

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A current problem in deoxyribonucleic acid (DNA) sequence analysis is to determine the exact locations of the genes and also in eukaryotes, the protein-coding regions in the mRNA primary transcript (pre-mRNA).The conversion into discrete numerical values of the symbols associated to the nucleotides of these sequences allows for a signal to address the problems related to localization and annotation of genes. In this work, thermodynamic data of free energy changes (ΔG°) on the formation of a duplex structure of DNA or RNA are used to convert the symbols into numerical values associated with the nucleotide sequence pre-mRNA. This study presents an analysis, based on techniques of time-frequency representation of a large number of gene sequences, in order to find variables related to pre-mRNA that could best characterize and discriminate coding regions from non-coding regions. It has been found that instantaneous frequency variables and instantaneous spectral energy variables in different frequency bands, allowed exons and introns to be correctly classified with more than 85%.
机译:脱氧核糖核酸(DNA)序列分析中的当前问题是确定基因的精确位置以及真核生物中mRNA初级转录本(pre-mRNA)中的蛋白质编码区。与这些序列的核苷酸相关联的信号允许信号解决与基因的定位和注释有关的问题。在这项工作中,利用自由能变化(ΔG°)形成DNA或RNA的双链体结构的热力学数据将符号转换为与核苷酸序列pre-mRNA相关的数值。这项研究基于大量基因序列的时频表示技术,进行了一项分析,目的是找到与前mRNA相关的变量,这些变量可以最好地区分和区分非编码区。已经发现,在不同频带中的瞬时频率变量和瞬时频谱能量变量允许外显子和内含子被正确地分类为超过85%。

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