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A Label-Free, Quadruplex-Based Functional Molecular Beacon (LFG4-MB) for Fluorescence Turn-On Detection of DNA and Nuclease

机译:无标记,基于四链体的功能分子信标(LFG4-MB)用于DNA和核酸酶的荧光开启检测

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摘要

We demonstrate a novel concept for the construction of a label-free, quadruplex-based functional molecular beacon (LFG4-MB) by using G-quadruplex motif as a substitute for Watson-Crick base pairing in the MB stem and a specific G-quadruplex binder, N-methyl mesoporphyrin IX (NMM) as a reporter. It shows high sensitivity in assays for UDG activity/inhibition and detection of DNA sequence based on the unique fluorescence increase that occurs as a result of the strong interaction between NMM and the folded quadruplex upon removal of uracil by UDG or displacement of block sequence by target DNA. The LFG4-MB is simple in design, fast in operation and could be easily transposesd to other biological relevant target analysis by simply changing the recognition portion. The LFG4-MB does not require any chemical modification for DNA, which offers the advantages of simplicity and cost efficiency and obviates the possible interference with the affinity and specificity of the MB as well as the kinetic behavior of the catalysts caused by the bulky fluorescent groups. More importantly, the LFG4-MB offers great extent of freedom to tune the experimental conditions for the general applicability in bioanalysis. Better by the quarter: A unique quadruplex-based, label-free functional molecular beacon (LFG4-MB) has been constructed for sensitive, facile and real-time assaying of UDG activity and inhibition and detection of a DNA sequence by using a G-quadruplex motif as a substitute for Watson-Crick base pairing in the MB stem and a specific G-quadruplex binder, N-methyl mesoporphyrin IX (NMM) as a fluorescent reporter.
机译:我们展示了一种新的概念,用于构建无标签的基于四链体的功能分子信标(LFG4-MB),方法是使用G-四链体基序作为MB茎和特定G-四链体中的Watson-Crick碱基配对的替代物结合剂为N-甲基中卟啉IX(NMM)。它在UDG活性/抑制和DNA序列检测的检测中显示出高度的敏感性,这是由于独特的荧光增强而产生的,这种荧光增强是由于UMM去除尿嘧啶或靶位点置换了序列后NMM与折叠的四链体之间发生了强烈的相互作用脱氧核糖核酸。 LFG4-MB设计简单,操作快速,并且只需更改识别部分即可轻松转换为其他生物学相关目标分析。 LFG4-MB不需要对DNA进行任何化学修饰,这提供了简单性和成本效益的优势,并消除了对MB的亲和力和特异性以及由庞大的荧光基团引起的催化剂动力学行为的可能干扰。 。更重要的是,LFG4-MB提供了极大的自由度来调整实验条件,从而可以普遍应用于生物分析。四分之一更好:构建了独特的基于四链体,无标记的功能性分子信标(LFG4-MB),用于通过G-敏感,便捷和实时测定UDG活性以及抑制和检测DNA序列。四重基序作为MB茎中Watson-Crick碱基配对的替代物,以及特定的G四重基结合剂N-甲基中卟啉IX(NMM)作为荧光报告分子。

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