A pattern matching algorithm for codon optimization and CpG motif-engineering in DNA expression vectors.

Ravi Vijaya Satya, Amar Mukherjee, Udaykumar Ranga
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Abstract

Codon optimization enhances the efficiency of DNA expression vectors used in DNA vaccination and gene therapy by increasing protein expression. Additionally, certain nucleotide motifs have experimentally been shown to be immuno-stimulatory while certain others immuno-suppressive. In this paper, we present algorithms to locate a given set of immuno-modulatory motifs in the DNA expression vectors corresponding to a given amino acid sequence and maximize or minimize the number and the context of the immuno-modulatory motifs in the DNA expression vectors. The main contribution is to use multiple pattern matching algorithms to synthesize a DNA sequence for a given amino acid sequence and a graph theoretic approach for finding the longest weighted path in a directed graph that will maximize or minimize certain motifs. This is achieved using O(n(2)) time, where n is the length of the amino acid sequence. Based on this, we develop a software tool.

DNA表达载体中密码子优化和CpG基序工程的模式匹配算法。
密码子优化通过提高蛋白质的表达,提高了DNA表达载体在DNA疫苗接种和基因治疗中的效率。此外,某些核苷酸基序已被实验证明具有免疫刺激作用,而另一些则具有免疫抑制作用。在本文中,我们提出了一种算法来定位DNA表达载体中对应于给定氨基酸序列的一组给定的免疫调节基序,并最大化或最小化DNA表达载体中免疫调节基序的数量和背景。主要贡献是使用多种模式匹配算法来合成给定氨基酸序列的DNA序列,并使用图论方法在有向图中寻找最长加权路径,从而最大化或最小化某些基序。这是使用O(n(2))时间实现的,其中n是氨基酸序列的长度。在此基础上,我们开发了一个软件工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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