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Identification and Analysis of Palindromes for RNA Sequences

机译:RNA序列回文序列的鉴定和分析

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A palindrome is a string of the form S = A1 A2 or S = A1 aA2, where A1 and A2 are substrings of S and the reverse of A2 exactly matches with A1. DNA palindromes show direct influence on tumerogenesis due to the formation of DNA palindromes at microRNA genes, which involve in tumor development. Furthermore, RNA palindromes play a crucial role in genomic instability and gene amplification in some human cancers. Therefore, it is important to develop effective approaches to identify and characterize biological approximate palindromes. In this paper, we developed a simple algorithm to find all the exact and approximate palindromes up to k errors (k is specified by the user) for the two different types of RNA sequence data, i.e. mRNA sequences of fusion genes and human microRNAs (miRNAs). We confirmed that the palindromes in RNA sequences are A-U rich. According to the Kolmogorov-Smirnov test, it was found that miRNA has a frequency distribution of palindromes different from the fusion genes' mRNAs. The proposed algorithm is easy to implement, which provides an effective tool for investigating the relationship between palindromes and cancer biology.
机译:回文集是形式为S = A1 A2或S = A1 aA2的字符串,其中A1和A2是S的子字符串,而A2的反字符串与A1完全匹配。由于在microRNA基因上形成了DNA回文,DNA回文显示了对肿瘤发生的直接影响,这与肿瘤的发展有关。此外,RNA回文序列在某些人类癌症中的基因组不稳定性和基因扩增中起着至关重要的作用。因此,重要的是开发有效的方法来鉴定和表征生物学上近似的回文。在本文中,我们开发了一种简单的算法,可以找到两种不同类型的RNA序列数据(即融合基因的mRNA序列和人microRNA(miRNA) )。我们确认RNA序列中的回文是富含A-U的。根据Kolmogorov-Smirnov试验,发现miRNA的回文频率分布不同于融合基因的mRNA。该算法易于实现,为研究回文与癌症生物学之间的关系提供了有效的工具。

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