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采用同位素稀释 LC-MS/MS 结合自动化固相萃取同时定量 DNA 中的甲基嘌呤。

Simultaneous quantification of methylated purines in DNA by isotope dilution LC-MS/MS coupled with automated solid-phase extraction.

机构信息

Department of Public Health, Chung Shan Medical University, Taichung 402, Taiwan.

出版信息

Anal Bioanal Chem. 2012 Jan;402(3):1199-208. doi: 10.1007/s00216-011-5559-1. Epub 2011 Nov 19.

Abstract

Since methylation at the N-7 and O(6) positions of guanine and the N-3 position of adenine in DNA are the predominant reaction sites, N(7)-methylguanine (N(7)-MeG), O(6)-methylguanine (O(6)-MeG), and N(3)-methyladenine (N(3)-MeA) have been suggested as good biomarkers for assessing exposure to methylating agents. Here, we report the development of a sensitive and selective assay based on liquid chromatography-tandem mass spectrometry (LC-MS/MS) to simultaneously measure N(7)-MeG, O(6)-MeG, and N(3)-MeA in DNA hydrolysates. With the use of isotope internal standards ((15)N(5)-N(7)-MeG, d(3)-O(6)-MeG, and d(3)-N(3)-MeA) and online solid-phase extraction, DNA hydrolysates can be directly analyzed within 12 min without prior sample purification. The limits of detection were 0.02, 0.002, and 0.01 ng/mL on-column (6.1, 0.6, and 3.4 fmol) for N(7)-MeG, O(6)-MeG, and N(3)-MeA, respectively. Inter- and intraday imprecision (CV) were 3.6-9.6% and 2.7-13.6%, respectively. Mean recoveries were 96-109%. This method was then applied to quantitate the amounts of methylated purines in calf thymus DNA treated with methyl methanesulfonate (MMS). The levels of N(7)-MeG, O(6)-MeG, and N(3)-MeA in calf thymus DNA increase with MMS concentration and incubation time. The ratio of relative yields of N(7)-MeG, O(6)-MeG, and N(3)-MeA in MMS-treated DNA was found to be 1.00:0.0032:0.119, respectively. This LC-MS/MS assay provides the sensitivity and high throughput required to evaluate the extent of methylated lesions in DNA induced by methylating agents.

摘要

由于 DNA 中鸟嘌呤的 N-7 和 O(6)位以及腺嘌呤的 N-3 位的甲基化是主要的反应位点,因此 N(7)-甲基鸟嘌呤 (N(7)-MeG)、O(6)-甲基鸟嘌呤 (O(6)-MeG) 和 N(3)-甲基腺嘌呤 (N(3)-MeA) 已被提议作为评估甲基化剂暴露的良好生物标志物。在这里,我们报告了一种基于液相色谱-串联质谱 (LC-MS/MS) 的灵敏和选择性测定法的开发,用于同时测量 DNA 水解物中的 N(7)-MeG、O(6)-MeG 和 N(3)-MeA。使用同位素内标 ((15)N(5)-N(7)-MeG、d(3)-O(6)-MeG 和 d(3)-N(3)-MeA) 和在线固相萃取,DNA 水解物可以在 12 分钟内直接分析,无需预先进行样品纯化。N(7)-MeG、O(6)-MeG 和 N(3)-MeA 的检测限分别为 0.02、0.002 和 0.01 ng/mL(柱上 6.1、0.6 和 3.4 fmol)。N(7)-MeG、O(6)-MeG 和 N(3)-MeA 的日内和日间精密度 (CV) 分别为 3.6-9.6%和 2.7-13.6%。平均回收率为 96-109%。然后,该方法应用于定量甲基甲烷磺酸 (MMS) 处理小牛胸腺 DNA 中甲基化嘌呤的量。小牛胸腺 DNA 中 N(7)-MeG、O(6)-MeG 和 N(3)-MeA 的水平随 MMS 浓度和孵育时间的增加而增加。在 MMS 处理的 DNA 中,N(7)-MeG、O(6)-MeG 和 N(3)-MeA 的相对产量比为 1.00:0.0032:0.119。该 LC-MS/MS 测定法提供了评估甲基化剂诱导的 DNA 中甲基化损伤程度所需的灵敏度和高通量。

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