Hardness of RNA Folding Problem With Four Symbols

Yi-Jun Chang
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引用次数: 13

Abstract

An RNA sequence is a string composed of four types of nucleotides, $A, C, G$, and $U$. The goal of the RNA folding problem is to find a maximum cardinality set of crossing-free pairs of the form $\{A,U\}$ or $\{C,G\}$ in a given RNA sequence. The problem is central in bioinformatics and has received much attention over the years. Abboud, Backurs, and Williams (FOCS 2015) demonstrated a conditional lower bound for a generalized version of the RNA folding problem based on a conjectured hardness of the $k$-clique problem. Their lower bound requires the RNA sequence to have at least 36 types of symbols, making the result not applicable to the RNA folding problem in real life (i.e., alphabet size 4). In this paper, we present an improved lower bound that works for the alphabet size 4 case. We also investigate the Dyck edit distance problem, which is a string problem closely related to RNA folding. We demonstrate a reduction from RNA folding to Dyck edit distance with alphabet size 10. This leads to a much simpler proof of the conditional lower bound for Dyck edit distance problem given by Abboud, Backurs, and Williams (FOCS 2015), and lowers the alphabet size requirement.
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四符号RNA折叠问题的硬度
RNA序列是由四种核苷酸组成的字符串,分别是a、C、G和U。RNA折叠问题的目标是在给定的RNA序列中找到形式为$\{a,U\}$或$\{C,G\}$的无交叉对的最大基数集。这个问题是生物信息学的核心问题,多年来一直受到广泛关注。Abboud, Backurs和Williams (FOCS 2015)基于k -团问题的推测硬度证明了RNA折叠问题广义版本的条件下界。它们的下界要求RNA序列至少有36种类型的符号,使得结果不适用于现实生活中的RNA折叠问题(即字母表大小为4)。在本文中,我们提出了一个改进的下界,适用于字母表大小为4的情况。我们还研究了Dyck编辑距离问题,这是一个与RNA折叠密切相关的字符串问题。我们证明了从RNA折叠到戴克编辑距离与字母表大小10的减少。这使得Abboud, Backurs和Williams (FOCS 2015)给出的Dyck编辑距离问题的条件下界的证明更加简单,并且降低了字母大小的要求。
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