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用于同时检测基因组5-甲基胞嘧啶和5-羟甲基胞嘧啶的无标记且不依赖序列的等温扩增策略

Label-Free and Sequence-Independent Isothermal Amplification Strategy for the Simultaneous Detection of Genomic 5-Methylcytosine and 5-Hydroxymethylcytosine.

作者信息

Zhang Feng, Li Chengpeng, Yang Di, Liu Bingqian, Zhou Yue, Zhou Zhixu, Zhong Hang, Wang Zhenchao, Chen Danping

机构信息

School of Pharmaceutical Sciences, Guizhou University, Guiyang 550025, China.

出版信息

Anal Chem. 2025 Feb 11;97(5):3063-3073. doi: 10.1021/acs.analchem.4c06200. Epub 2025 Jan 27.

Abstract

5-Methylcytosine (5mC) and 5-hydroxymethylcytosine (5hmC) are crucial epigenetic modifications in eukaryotic genomic DNA that regulate gene expression and are associated with the occurrence of various cancers. Here, we combined bisulfite conversion with 4-acetamido-2,2,6,6-tetramethyl-1-oxopiperridinium tetrafluoroborate (ACTBF, TCI) oxidation to develop a label-free and sequence-independent isothermal amplification (BTIA) assay for a genome-wide 5mC and 5hmC analysis. The BTIA strategy can distinguish 5mC and 5hmC signatures from other bases with high sensitivity and good specificity, avoiding sophisticated chemical modifications and expensive protein labeling. Moreover, the utilization of terminal deoxynucleotidyl transferase (TdT) enables the proposed strategy to detect global 5mC and 5hmC without sequence dependence. With only 78 ng of input of genomic DNA, global 5mC and 5hmC levels were accurately quantified in cells (including cancer cells of A549, T47D, and K562 and normal cells of HEK-293T, CHO, and NRK-52E) and clinical whole blood samples (including healthy control, precancerous cervical cancer, and confirmed cervical cancer) within 18 h. The detection results suggested that 5mC was highly expressed in cancer cells. More importantly, a significant increase in 5mC was observed in precancerous cervical cancer and further upregulation in confirmed cervical cancer, suggesting a correlation between 5mC and cancer occurrence and development. However, 5hmC showed the reverse result in these tested cells and clinical samples. Collectively, the BTIA strategy can be easily performed on the ordinary heating apparatus in almost all research and medical laboratories, showing a significant application in the early screening of cervical cancer in the clinic.

摘要

5-甲基胞嘧啶(5mC)和5-羟甲基胞嘧啶(5hmC)是真核基因组DNA中至关重要的表观遗传修饰,可调节基因表达,并与多种癌症的发生相关。在此,我们将亚硫酸氢盐转化与4-乙酰氨基-2,2,6,6-四甲基-1-氧代哌啶四氟硼酸盐(ACTBF,东京化成工业株式会社)氧化相结合,开发了一种用于全基因组5mC和5hmC分析的无标记且不依赖序列的等温扩增(BTIA)检测方法。BTIA策略能够以高灵敏度和良好的特异性从其他碱基中区分出5mC和5hmC信号,避免了复杂的化学修饰和昂贵的蛋白质标记。此外,末端脱氧核苷酸转移酶(TdT)的使用使所提出的策略能够在不依赖序列的情况下检测整体的5mC和5hmC。仅需78 ng的基因组DNA输入量,就能在18小时内准确量化细胞(包括A549、T47D和K562癌细胞以及HEK-293T、CHO和NRK-52E正常细胞)和临床全血样本(包括健康对照、癌前宫颈癌和确诊宫颈癌)中的整体5mC和5hmC水平。检测结果表明5mC在癌细胞中高表达。更重要的是,在癌前宫颈癌中观察到5mC显著增加,在确诊宫颈癌中进一步上调,这表明5mC与癌症的发生和发展之间存在关联。然而,5hmC在这些测试细胞和临床样本中呈现相反的结果。总体而言,BTIA策略几乎可以在所有研究和医学实验室的普通加热设备上轻松实施,在临床宫颈癌早期筛查中显示出显著的应用价值。

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