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快速电泳分析法定量检测基因组 DNA 损伤。

Development of a rapid electrophoretic assay for genomic DNA damage quantification.

机构信息

Post-Graduation Program in Biological Sciences: Toxicological Biochemistry, Department of Biochemistry and Molecular Biology, Federal University of Santa Maria, Santa Maria, RS, Brazil.

Post-Graduation Program in Biological Sciences: Toxicological Biochemistry, Department of Biochemistry and Molecular Biology, Federal University of Santa Maria, Santa Maria, RS, Brazil.

出版信息

Ecotoxicol Environ Saf. 2021 Mar 1;210:111859. doi: 10.1016/j.ecoenv.2020.111859. Epub 2021 Jan 8.

Abstract

Accuracy, sensitivity, simplicity, reproducibility, and low-cost are desirable requirements for genotoxicity assessment techniques. Here we describe a simple electrophoretic assay for genomic DNA lesions quantification (EAsy-GeL) based on subjecting DNA samples to rapid unwinding/renaturation treatments and neutral agarose gel electrophoresis. The experiments performed in this work involved different biological samples exposed to increasing environmental-simulated doses of ultraviolet-B (UVB) radiation, such as Escherichia coli, human leukocytes, and isolated human genomic DNA. DNA extraction was carried out using a universal and low-cost protocol, which takes about 4 h. Before electrophoresis migration, DNA samples were kept into a neutral buffer to detect double-strand breaks (DSBs) or subjected to a 5-min step of alkaline unwinding and neutral renaturation to detect single-strand breaks (SSBs) or incubated with the DNA repair enzyme T4-endonuclease V for the detection of cyclobutane pyrimidine dimers (CPDs) before the 5-min step of DNA unwinding/renaturation. Then, all DNA samples were separated by neutral agarose gel electrophoresis, the DNA average length of each lane was calculated through the use of free software, and the frequency of DNA breaks per kbp was determined by a simple rule of three. Dose-response experiments allowed the quantification of different levels of DNA damage per electrophoretic run, varying from a constant and low amount of DSBs/SSBs to high and dose-dependent levels of CPDs. Compared with other assays based on alkaline unwinding and gel electrophoresis, EAsy-GeL has important advantages for both environmental monitoring and laboratory testing purposes. The simplicity and applicability of this protocol to other types of DNA lesions, biological models, and agents make it ideal for genotoxicity, DNA repair studies, as well as for assessing exposure risks to ecosystems and human health.

摘要

准确性、灵敏度、简单性、重现性和低成本是遗传毒性评估技术的理想要求。在这里,我们描述了一种简单的基因组 DNA 损伤定量电泳分析(EAsy-GeL),该方法基于对 DNA 样品进行快速解旋/复性处理和中性琼脂糖凝胶电泳。本工作中进行的实验涉及不同的生物样品,这些样品暴露于增加的环境模拟剂量的紫外线-B(UVB)辐射下,例如大肠杆菌、人白细胞和分离的人基因组 DNA。DNA 提取使用通用且低成本的方案进行,大约需要 4 小时。在电泳迁移之前,将 DNA 样品保存在中性缓冲液中以检测双链断裂(DSBs),或者进行 5 分钟的碱解旋和中性复性以检测单链断裂(SSBs),或者在 5 分钟的 DNA 解旋/复性之前用 DNA 修复酶 T4-内切核酸酶 V 孵育以检测环丁烷嘧啶二聚体(CPDs)。然后,所有 DNA 样品通过中性琼脂糖凝胶电泳分离,通过使用免费软件计算每个泳道的 DNA 平均长度,并通过简单的三原则确定每个 kbp 的 DNA 断裂频率。剂量反应实验允许量化每个电泳运行的不同水平的 DNA 损伤,从恒定且低水平的 DSB/SSBs 到高水平且剂量依赖性的 CPDs。与基于碱解旋和凝胶电泳的其他测定方法相比,EAsy-GeL 在环境监测和实验室测试方面具有重要优势。该方案的简单性和适用性使其非常适合遗传毒性、DNA 修复研究以及评估对生态系统和人类健康的暴露风险,也非常适合其他类型的 DNA 损伤、生物模型和试剂。

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