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Melting temperature of molecular beacons as an indicator of the ligase detection reaction for multiplex detection of point mutations

机译:分子信标的解链温度作为连接酶检测反应的指标,用于点突变的多重检测

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The multiplex detection of point mutations plays an increasingly important role in clinical diagnosis of genetic-based diseases. The present study reports a novel technology for the analysis of multiple point mutations based on the ligase detection reaction (LDR) and melting curve assay. In this method, the LDR was utilized to identify mutations using the high selectivity of Taq DNA ligase. While the probes match the target sequence perfectly, the allele-specific discriminating probe (50 labeled with fluorophore) and common probe (30 modified by quencher) will join with each other. Through the special design, the ligation product can then form a molecular beacon. Finally, the melting temperature (T-m) of the molecular beacon was measured by melting curve assay. The mutation type was identified through the melting curve and Tm value. For multiplex detection, molecular beacons with different T(m)s were achieved by changing the length or GC content of the arm sequences and then presenting them to different mutation sites. Three common point mutations of the alpha-globin gene in thalassemia disease were identified simultaneously using this approach. The Tm achieved by the assay for each of the three mutation sites [Cd122 (C > G), Cd125 (T > C) and Cd142 (T > C)] was 73 degrees C, 71 degrees C and 60 degrees C, respectively. The veracity and reproducibility of the method was evaluated by clinical samples which were validated by sequencing. In summary, this method, based on the LDR and melting curve assay, provides a promising tool for detection of gene mutations.
机译:点突变的多重检测在基于遗传的疾病的临床诊断中起着越来越重要的作用。本研究报告了一种基于连接酶检测反应(LDR)和解链曲线分析的多点突变分析新技术。在这种方法中,利用Taq DNA连接酶的高选择性,LDR被用于识别突变。当探针与靶序列完全匹配时,等位基因特异性区分探针(用荧光团标记的50个)和普通探针(用淬灭剂修饰的30个)将相互连接。通过特殊设计,连接产物可以形成分子信标。最后,通过熔解曲线测定法测量分子信标的熔解温度(T-m)。通过熔解曲线和Tm值鉴定突变类型。对于多重检测,通过改变臂序列的长度或GC含量,然后将其呈现给不同的突变位点,可获得具有不同T(m)的分子信标。使用这种方法可以同时鉴定地中海贫血病中α-珠蛋白基因的三个常见点突变。通过分析获得的三个突变位点[Cd122(C> G),Cd125(T> C)和Cd142(T> C)]中的每一个的Tm分别为73摄氏度,71摄氏度和60摄氏度。该方法的准确性和可重复性由临床样品评估,并通过测序验证。总而言之,该方法基于LDR和解链曲线分析,为检测基因突变提供了有希望的工具。

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