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2'-脱氧胞苷二醇,自由基介导的DNA氧化过程中缺失的一环。

2'-Deoxycytidine glycols, a missing link in the free radical-mediated oxidation of DNA.

作者信息

Tremblay S, Douki T, Cadet J, Wagner J R

机构信息

Institut Universitaire de Gériatrie de Sherbrooke (Pavillon d'Youville), 1036 rue Bélvédère Sud, Sherbrooke, Québec J1H 4C4, Canada.

出版信息

J Biol Chem. 1999 Jul 23;274(30):20833-8. doi: 10.1074/jbc.274.30.20833.

Abstract

2'-Deoxycytidine glycols (5,6-dihydroxy-5, 6-dihydro-2'-deoxycytidine) are major products of the hydroxyl radical-induced oxidation of 2'-deoxycytidine resulting from either a Fenton reaction or exposure to ionizing radiation. Because of their instability, however, the glycols have not previously been characterized. Instead, the impetus has been placed on the primary decomposition products of 2'-deoxycytidine glycols, which includes 5-hydroxy-2'-deoxycytidine, 5-hydroxy-2'-deoxyuridine, and 2'-deoxyuridine glycols. Here, we have identified one of the four possible diastereomers of 2'-deoxycytidine glycols by product analyses of decomposition products, (1)H NMR, and mass spectrometry. This glycol was observed to decompose with a half-life of 50 min at 37 degrees C in buffered neutral solutions and preferentially undergo dehydration to 5-hydroxy-2'-deoxycytidine. The rate of decomposition was strongly dependent on pH (2-10) and the concentration of phosphate ion (10-300 mM). Next, we report on the deamination of cytosine glycols to uracil glycols in oxidized DNA using acid hydrolysis and high performance liquid chromatography analysis with electrochemical detection to monitor 5-hydroxycytosine and 5-hydroxyuracil. The results showed that the lifetime of cytosine glycols is greatly enhanced in DNA (34-fold; half-life, 28 h), and that deamination accounts for at least one-third of the total decomposition. The relatively long lifetime of cytosine glycols in DNA suggests that this important class of DNA oxidation products will be significantly involved in repair and mutagenesis processes.

摘要

2'-脱氧胞苷二醇(5,6-二羟基-5,6-二氢-2'-脱氧胞苷)是由芬顿反应或暴露于电离辐射导致的2'-脱氧胞苷羟基自由基诱导氧化的主要产物。然而,由于其不稳定性,二醇此前尚未得到表征。相反,研究重点一直放在2'-脱氧胞苷二醇的主要分解产物上,这些产物包括5-羟基-2'-脱氧胞苷、5-羟基-2'-脱氧尿苷和2'-脱氧尿苷二醇。在此,我们通过分解产物分析、(1)H NMR和质谱鉴定了2'-脱氧胞苷二醇四种可能的非对映异构体之一。在缓冲中性溶液中,该二醇在37℃下的半衰期为50分钟,且优先脱水生成5-羟基-2'-脱氧胞苷。分解速率强烈依赖于pH值(2-10)和磷酸根离子浓度(10-300 mM)。接下来,我们报告了使用酸水解和高效液相色谱分析及电化学检测来监测5-羟基胞嘧啶和5-羟基尿嘧啶,从而研究氧化DNA中胞嘧啶二醇脱氨生成尿嘧啶二醇的情况。结果表明,胞嘧啶二醇在DNA中的寿命大大延长(34倍;半衰期为28小时),且脱氨至少占总分解的三分之一。胞嘧啶二醇在DNA中相对较长的寿命表明,这类重要的DNA氧化产物将在修复和诱变过程中发挥重要作用。

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