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碱性条件下的 DNA 完整性:影响彗星试验的因素研究。

DNA integrity under alkaline conditions: An investigation of factors affecting the comet assay.

机构信息

Department of Pharmaceutical Biosciences, Uppsala University, Box 591, Uppsala SE-751 24, Sweden.

Department of Pharmaceutical Biosciences, Uppsala University, Box 591, Uppsala SE-751 24, Sweden.

出版信息

Mutat Res Genet Toxicol Environ Mutagen. 2023 Oct;891:503680. doi: 10.1016/j.mrgentox.2023.503680. Epub 2023 Aug 11.

Abstract

The effect of pH on DNA integrity was assessed using a three-step approach. The comet assay was used on a whole genome level, with three different protocols: neutral (no alkaline unwinding), flash (pH 12.5 with 2.5 min unwinding), and the conventional alkaline protocol (pH>13 with 40 min unwinding). Real-time quantitative PCR (RT-qPCR) was then used to study the isolated DNA, revealing that gene amplification decreased with increasing pH, indicating DNA degradation. Specially designed molecular beacons were used to examine DNA at the molecular level, with or without alkali-labile site (ALS) insertions. At pH 12.5, fluorescence in the hairpins with ALS started to increase after 30 min, while at pH> 13, this increase was already observed after 5 min, indicating a significant increase in DNA strand breaks. Liquid chromatography analysis was also used, demonstrating that the hairpins remained intact up to pH 10, even after 1 h exposure, whereas, at pH 12.5, partial conversion into strand breaks occurred after 30 min. At pH> 13, the hairpins were almost completely degraded after 30 min. The flash protocol effectively detects DNA single- and double-strand breaks and identified these damages after 2.5 min of alkaline treatment at pH 12.5. When the hairpins were exposed to pH 12.5 for 60 min, ALS were converted to strand breaks, demonstrating the sensitivity of this approach to detect changes in DNA structure. These findings indicate that pH poses a substantial risk to DNA integrity, leading to significantly higher background levels of DNA damage compared to conditions closer to neutrality. Our study demonstrates the importance of understanding the influence of pH on DNA stability and provides insights into risks associated with alkaline environments, especially at pH> 13.

摘要

采用三步法评估 pH 对 DNA 完整性的影响。彗星试验在全基因组水平上进行,使用三种不同的方案:中性(无碱性解旋)、瞬时(pH12.5,解旋 2.5 分钟)和常规碱性方案(pH>13,解旋 40 分钟)。然后使用实时定量 PCR(RT-qPCR)研究分离的 DNA,结果表明基因扩增随着 pH 的增加而减少,表明 DNA 降解。专门设计的分子信标用于在分子水平上检查 DNA,有无碱不稳定部位(ALS)插入。在 pH12.5 下,带有 ALS 的发夹在 30 分钟后荧光开始增加,而在 pH>13 下,这种增加在 5 分钟后已经观察到,表明 DNA 链断裂明显增加。液相色谱分析也表明,即使在 1 小时暴露后,发夹在 pH10 下仍保持完整,而在 pH12.5 下,部分发夹在 30 分钟后转化为链断裂。在 pH>13 下,发夹在 30 分钟后几乎完全降解。瞬时方案在 pH12.5 下碱性处理 2.5 分钟后,可有效检测 DNA 单链和双链断裂,并识别这些损伤。当发夹在 pH12.5 下暴露 60 分钟时,ALS 转化为链断裂,证明了这种方法检测 DNA 结构变化的敏感性。这些发现表明 pH 对 DNA 完整性构成了重大风险,导致与更接近中性条件相比,DNA 损伤的背景水平显著升高。我们的研究表明了理解 pH 对 DNA 稳定性的影响的重要性,并为理解与碱性环境相关的风险提供了线索,尤其是在 pH>13 时。

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