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核酸的非酶促脱嘌呤作用:影响因素及机制

Non-enzymatic depurination of nucleic acids: factors and mechanisms.

作者信息

An Ran, Jia Yu, Wan Baihui, Zhang Yanfang, Dong Ping, Li Jing, Liang Xingguo

机构信息

College of Food Science and Engineering, Ocean University of China, Qingdao, 266003, China.

出版信息

PLoS One. 2014 Dec 29;9(12):e115950. doi: 10.1371/journal.pone.0115950. eCollection 2014.

Abstract

Depurination has attracted considerable attention since a long time for it is closely related to the damage and repair of nucleic acids. In the present study, depurination using a pool of 30-nt short DNA pieces with various sequences at diverse pH values was analyzed by High Performance Liquid Chromatography (HPLC). Kinetic analysis results showed that non-enzymatic depurination of oligodeoxynucleotides exhibited typical first-order kinetics, and its temperature dependence obeyed Arrhenius' law very well. Our results also clearly showed that the linear relationship between the logarithms of rate constants and pH values had a salient point around pH 2.5. Interestingly and unexpectedly, depurination depended greatly on the DNA sequences. The depurination of poly (dA) was found to be extremely slow, and thymine rich sequences depurinated faster than other sequences. These results could be explained to some extent by the protonation of nucleotide bases. Moreover, two equations were obtained based on our data for predicting the rate of depurination under various conditions. These results provide basic data for gene mutagenesis and nucleic acids metabolism in acidic gastric juice and some acidic organelles, and may also help to rectify some misconceptions about depurination.

摘要

脱嘌呤作用长期以来一直备受关注,因为它与核酸的损伤和修复密切相关。在本研究中,使用高效液相色谱(HPLC)分析了在不同pH值下具有各种序列的30个核苷酸短DNA片段池的脱嘌呤作用。动力学分析结果表明,寡脱氧核苷酸的非酶促脱嘌呤表现出典型的一级动力学,其温度依赖性非常符合阿伦尼乌斯定律。我们的结果还清楚地表明,速率常数的对数与pH值之间的线性关系在pH 2.5左右有一个显著点。有趣且出乎意料的是,脱嘌呤作用在很大程度上取决于DNA序列。发现聚(dA)的脱嘌呤极其缓慢,富含胸腺嘧啶的序列比其他序列脱嘌呤更快。这些结果在一定程度上可以通过核苷酸碱基的质子化来解释。此外,根据我们的数据得到了两个方程,用于预测各种条件下的脱嘌呤速率。这些结果为酸性胃液和一些酸性细胞器中的基因诱变和核酸代谢提供了基础数据,也可能有助于纠正一些关于脱嘌呤的误解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fecf/4278771/34ab9ddd0ad1/pone.0115950.g001.jpg

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