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Electrochemical scanning of DNA point mutations via MutS protein-mediated mismatch recognition

机译:通过MutS蛋白介导的错配识别对DNA点突变进行电化学扫描

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摘要

MutS protein is an important part of the DNA repair system which can specifically recognize and bind all possible single-base mismatches as well as 1-4 base insertion or deletion loops with varying affinities independent of other proteins or cofactors. in this paper, a new approach for electrochemical gene mutation detection based on the utilization of MutS protein for the mutation recognition and spontaneously intercalated methylene blue (MB) markers for electrochemical signal generation is described. This method involves the immobilization of MutS protein onto the gold electrode, the hybridization of target DNA to form homoduplex or heteroduplex DNA, the application of MutS protein for the mutation recognition, and finally the intercalation of MB. The background is very low because MutS protein binds DNA containing mispaired and unpaired bases but does not bind equally well to DNA without mismatches or single-stranded DNA. The proposed approach has been successfully implemented for the identification of single-base mutation in -28 site of the beta-thalassemia gene with a detection limit of 5.6 x 10(-13) M, demonstrating that this method provides a highly specific and cost-efficient approach for point mutation detection.
机译:MutS蛋白是DNA修复系统的重要组成部分,可以特异性识别并结合所有可能的单碱基错配以及1-4个碱基的插入或缺失环,其亲和力与其他蛋白质或辅因子无关。本文描述了一种新的电化学基因突变检测方法,该方法基于利用MutS蛋白进行突变识别和自发插入的亚甲基蓝(MB)标记来产生电化学信号。该方法涉及将MutS蛋白固定在金电极上,与靶DNA杂交形成同型双链或异源双链DNA,将MutS蛋白用于突变识别,最后插入MB。背景非常低,因为MutS蛋白会结合含有错配和未配对碱基的DNA,但在没有错配或单链DNA的情况下不能与DNA很好地结合。该提议方法已成功实施,用于鉴定β地中海贫血基因-28位点的单碱基突变,检出限为5.6 x 10(-13)M,证明该方法提供了高度特异性和成本高的点突变检测的有效方法。

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