首页> 美国卫生研究院文献>The Journal of Molecular Diagnostics : JMD >Improved Real-Time Multiplex Polymerase Chain Reaction Detection of Methylenetetrahydrofolate Reductase (MTHFR) 677CT and 1298AC Polymorphisms Using Nearest Neighbor Model-Based Probe Design
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Improved Real-Time Multiplex Polymerase Chain Reaction Detection of Methylenetetrahydrofolate Reductase (MTHFR) 677CT and 1298AC Polymorphisms Using Nearest Neighbor Model-Based Probe Design

机译:亚甲基四氢叶酸还原酶(MTHFR)677C T和1298A C多态性的改进实时多重聚合酶链反应检测基于最近邻模型的探针设计

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摘要

The disorders of folate metabolism caused by methylenetetrahydrofolate reductase (MTHFR) gene polymorphisms may lead to several disease states including coronary heart disease, venous thrombosis, and several types of cancer. We have developed a real-time multiplex single-tube polymerase chain reaction procedure on the LightCycler for the detection of the two most commonly occurring variants, 677C>T and 1298A>C, in the MTHFR gene. An improved probe design, based on the nearest neighbor model for nucleic acid-probe duplex stability, resulted in a better separation (ΔTm ∼ 10°C) of melting peaks of the wild-type and mutant alleles than that by the existing method (ΔTm ∼ 3°C) for specimens heterozygous for the 1298A>C polymorphism. Of the 333 blood specimens analyzed by this procedure, we did not find any samples that gave ambiguous results. The specimens with homozygous mutation for one polymorphism were of the wild type for the other variant. The assay was validated by the comparison of the genotyping results of 50 blood specimens from the LightCycler polymerase chain reaction with the conventional restriction fragment length polymorphism procedures. There was 100% concordance of the test results obtained by the two techniques. This assay is reliable, economical, and can be performed by less trained technologists compared with the procedure performed by the conventional restriction fragment length polymorphism technique.
机译:亚甲基四氢叶酸还原酶(MTHFR)基因多态性引起的叶酸代谢紊乱可能导致多种疾病,包括冠心病,静脉血栓形成和多种类型的癌症。我们已经在LightCycler上开发了实时多重单管聚合酶链反应程序,用于检测MTHFR基因中两个最常见的变体677C> T和1298A> C。基于最近的核酸探针双链体稳定性模型,改进了探针设计,与现有方法(ΔTm)相比,野生型和突变等位基因的解链峰的分离度更好(ΔTm〜10°C) 1298A> C多态性杂合的标本〜3°C)。在通过此程序分析的333个血液样本中,我们没有发现任何给出歧义结果的样本。具有一个多态性纯合突变的标本是另一种变异的野生型。通过比较来自LightCycler聚合酶链反应的50个血液样本的基因分型结果与常规限制性片段长度多态性方法的比较,验证了该测定方法。通过两种技术获得的测试结果具有100%的一致性。与通过常规限制性片段长度多态性技术进行的程序相比,该分析是可靠的,经济的,并且可由受过较少训练的技术人员进行。

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