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DNA中主要和修饰核苷的定量反相高效液相色谱法

Quantitative reversed-phase high-performance liquid chromatography of major and modified nucleosides in DNA.

作者信息

Gehrke C W, McCune R A, Gama-Sosa M A, Ehrlich M, Kuo K C

出版信息

J Chromatogr. 1984 Sep 28;301(1):199-219. doi: 10.1016/s0021-9673(01)89189-5.

Abstract

Improved, highly accurate high-performance liquid chromatographic methods for the measurement of the major and modified nucleosides in enzymatic digests of DNA using a single column are described. Four high resolution separation protocols (isocratic, binary, ternary and high speed) with specifically improved selectivity for 5-methyldeoxycytidine (m5dCyd) from Ade, dIno and Guo are presented. From a detailed study of the various factors contributing to the precision and accuracy of the measurement, optimized conditions and quantitative protocols were established. The ternary buffer allows for the first time the determination of N6-methyldeoxyadenosine (m6dAdo) in the same chromatographic analysis with the other deoxyribonucleosides. The binary system allows quantitation of the absolute amounts of each ribo- and deoxyribonucleoside as well as the mole % of each as the second buffer elutes 5'dA and the internal standard 8-bromoguanosine. The isocratic system allows precise quantitation of the mole % of each ribo- and deoxyribonucleoside while eliminating the need for buffer change valves, buffer cycling and column re-equilibration. Also, a high-speed isocratic system is described which permits separation of the deoxyribonucleosides in 6 min. The quantitative, enzymatic hydrolysis of DNA was evaluated by comparing a 40-h, three-enzyme system with a 4-h, two-enzyme procedure. The latter protocol proved to be an excellent hydrolysis method. These high resolution liquid chromatography techniques provide the most precise, sensitive and accurate measurement of m5dCyd available, in a straightforward method using as little as 1 microgram of DNA, and have allowed us to demonstrate: the existence of tissue-specific differences in levels of m5dCyd in DNA of humans, monkeys, rats and mice; that m5dCyd levels in DNA change during fetal development; that genomic undermethylation of DNA is correlated with cancer and the presence of m6dAdo in DNA of thermophilic organisms.

摘要

本文描述了一种改进的、高精度的高效液相色谱方法,该方法使用单一色谱柱测量DNA酶解产物中的主要核苷和修饰核苷。介绍了四种高分辨率分离方案(等度洗脱、二元梯度洗脱、三元梯度洗脱和高速洗脱),这些方案对5-甲基脱氧胞苷(m5dCyd)与腺嘌呤(Ade)、脱氧肌苷(dIno)和鸟嘌呤(Guo)具有特别改进的选择性。通过对影响测量精度和准确性的各种因素进行详细研究,建立了优化条件和定量方案。三元缓冲液首次实现了在同一色谱分析中与其他脱氧核糖核苷同时测定N6-甲基脱氧腺苷(m6dAdo)。二元系统可定量每种核糖核苷和脱氧核糖核苷的绝对量以及每种核苷的摩尔百分比,因为第二种缓冲液可洗脱5'dA和内标8-溴鸟苷。等度洗脱系统可精确测定每种核糖核苷和脱氧核糖核苷的摩尔百分比,同时无需缓冲液切换阀、缓冲液循环和色谱柱重新平衡。此外,还描述了一种高速等度洗脱系统,该系统可在6分钟内分离脱氧核糖核苷。通过比较40小时的三酶系统和4小时的双酶程序,对DNA的定量酶促水解进行了评估。后一种方案被证明是一种出色的水解方法。这些高分辨率液相色谱技术以直接的方法,仅使用1微克DNA,就提供了对m5dCyd最精确、灵敏和准确的测量,并使我们能够证明:人类、猴子、大鼠和小鼠DNA中m5dCyd水平存在组织特异性差异;DNA中m5dCyd水平在胎儿发育过程中会发生变化;DNA的基因组低甲基化与癌症相关,以及嗜热生物DNA中存在m6dAdo。

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