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通过化学衍生化结合氟 NMR 光谱法鉴定和定量 -甲基腺苷。

Identification and quantification of -methyladenosine by chemical derivatization coupled with F NMR spectroscopy.

机构信息

Key Laboratory of Green Chemistry and Technology (Ministry of Education), College of Chemistry, Sichuan University, Chengdu 610064, P. R. China.

Department of Chemistry, Xihua University, Chengdu 610039, P. R. China.

出版信息

Org Biomol Chem. 2024 Mar 27;22(13):2566-2573. doi: 10.1039/d4ob00169a.

DOI:10.1039/d4ob00169a
PMID:38465392
Abstract

-Methyladenosine (6mA) is a well-known prokaryotic DNA modification that has been shown to play epigenetic roles in eukaryotic DNA. Accurate detection and quantification of 6mA are prerequisites for molecular understanding of the impact of 6mA modification on DNA. However, the existing methods have several problems, such as high false-positive rate, time-consuming and complex operating procedures. Chemical sensors for the selective detection of 6mA modification are rarely reported in the literature. Fluorinated phenylboronic acid combined with F NMR analysis is an effective method for determining DNA or RNA modification. In this study, we presented a simple and fast chemical method for labelling the 6th imino group of 6mA using a boric-acid-derived probe. Besides, the trifluoromethyl group of trifluoromethyl phenylboronic acid (2a) could detect 6mA modification through F NMR. Combined with this sensor system, 6mA modification could be detected well and quickly in 6 types of deoxynucleoside mixtures and DNA samples. Taken together, the method developed in the current study has potential for specific detection of 6mA in biological samples.

摘要
  • 甲基腺嘌呤(6mA)是一种众所周知的原核 DNA 修饰,已被证明在真核 DNA 中发挥表观遗传作用。准确检测和定量 6mA 是分子理解 6mA 修饰对 DNA 影响的前提。然而,现有的方法存在一些问题,例如假阳性率高、耗时且操作程序复杂。文献中很少有报道用于选择性检测 6mA 修饰的化学传感器。氟化苯硼酸与 F NMR 分析相结合是一种有效测定 DNA 或 RNA 修饰的方法。在本研究中,我们提出了一种简单快速的化学方法,使用硼酸衍生的探针标记 6mA 的第 6 个亚氨基。此外,三氟甲基苯硼酸(2a)的三氟甲基可通过 F NMR 检测 6mA 修饰。结合该传感器系统,可在 6 种脱氧核苷混合物和 DNA 样品中快速、灵敏地检测 6mA 修饰。综上所述,本研究开发的方法具有在生物样品中特异性检测 6mA 的潜力。

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