Analysis of 5-Methyl Cytosine Containing Oligomers Via Reduction of Tetracationic Di-Viologen Derivatives Using Square Wave Voltammetry

IF 3.4 Q2 CHEMISTRY, ANALYTICAL
Victoria G. Preston, Eli G. Hvastkovs
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Abstract

5-Methylcytosine (5 mC) is an epigenetic modification that plays several important roles ranging from development to disease progression. Local cytosine methylation is still detected and quantified utilizing bisulfite cytosine to uracil conversion and methylated base counting following PCR. Electrochemical approaches may offer more rapid means to provide this output. Here, small oligomeric DNA sequences from the CD8+ T-cell reporter gene featuring between 0 and 4 5 mC sites were immobilized on Au electrodes via self-assembly. 5 mC content was assayed via square wave voltametric reduction of a di-viologen molecule (C12H25V2+C6H12V2+C12H25, V2+=4,4’-bipyridyl or viologen) bound to the DNA. 5 mC presence induced subtle structural changes in the oligomers, which could be detected monitoring di-viologen reduction current changes at −0.39 V vs. SCE after exposure to higher ionic strength conditions. Solution phase CD spectroscopy was employed to validate the DNA structural changes occurring at the electrode surface and provide insight into the structural perturbations resulting from 5 mC presence. Overall, this method provides a relatively simple electrochemical 5 mC monitoring approach for small gene sequences based on helical structure.

Abstract Image

利用方波伏安法分析通过还原四阳离子二缩二脲衍生物获得的含 5-甲基胞嘧啶的低聚物
5-甲基胞嘧啶(5mC)是一种表观遗传修饰,在发育和疾病进展等方面发挥着多种重要作用。目前仍利用亚硫酸氢盐胞嘧啶到尿嘧啶的转化以及 PCR 之后的甲基化碱基计数来检测和量化局部胞嘧啶甲基化。 电化学方法可以更快速地提供这种结果。在这里,来自 CD8+ T 细胞报告基因、具有 0 至 4 个 5mC 位点的小寡聚 DNA 序列通过自组装被固定在金电极上。通过方波伏安法还原与 DNA 结合的双紫精烯分子(C12H25V2+C6H12V2+C12H25,V2+ = 4,4'- 联吡啶或紫精烯)来检测 5mC 含量。5mC 的存在诱导了低聚物结构的微妙变化,在暴露于较高离子强度条件下后,通过监测二紫罗兰还原电流在 -0.39 V 与 SCE 的对比变化,可以检测到这种变化。利用溶液相 CD 光谱验证了电极表面发生的 DNA 结构变化,并深入了解了 5mC 的存在所导致的结构扰动。总之,这种方法为基于螺旋结构的小基因序列提供了一种相对简单的电化学 5mC 监测方法。
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CiteScore
2.60
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