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Prediction of Protein Coding Regions Using a Wide-Range Wavelet Window Method

机译:大范围小波窗口法预测蛋白质编码区

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Prediction of protein coding regions is an important topic in the field of genomic sequence analysis. Several spectrum-based techniques for the prediction of protein coding regions have been proposed. However, the outstanding issue in most of the proposed techniques is that these techniques depend on an experimentally-selected, predefined value of the window length. In this paper, we propose a new Wide-Range Wavelet Window (WRWW) method for the prediction of protein coding regions. The analysis of the proposed wavelet window shows that its frequency response can adapt its width to accommodate the change in the window length so that it can allow or prevent frequencies other than the basic frequency in the analysis of DNA sequences. This feature makes the proposed window capable of analyzing DNA sequences with a wide range of the window lengths without degradation in the performance. The experimental analysis of applying the WRWW method and other spectrum-based methods to five benchmark datasets has shown that the proposed method outperforms other methods along a wide range of the window lengths. In addition, the experimental analysis has shown that the proposed method is dominant in the prediction of both short and long exons.
机译:蛋白质编码区的预测是基因组序列分析领域中的重要课题。已经提出了几种基于光谱的蛋白质编码区预测技术。但是,大多数提议的技术中的突出问题是这些技术取决于实验选择的窗口长度的预定义值。在本文中,我们提出了一种新的广域小波窗口(WRWW)方法来预测蛋白质编码区域。对提出的小波窗口的分析表明,它的频率响应可以适应其宽度,以适应窗口长度的变化,从而在分析DNA序列时可以允许或阻止除基本频率以外的其他频率。此功能使建议的窗口能够分析宽范围的窗口长度的DNA序列,而不会降低性能。对五个基准数据集应用WRWW方法和其他基于频谱的方法的实验分析表明,该方法在很大的窗口长度范围内都优于其他方法。此外,实验分析表明,该方法在短和长外显子的预测中均占主导地位。

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