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Two-color quantitative multiplex methylation-specific PCR

机译:两色定量多重甲基化特异性PCR

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In recent years, several methylation-specific PCR-based techniques have been developed to identify and characterize hypermethylation of CpG dinucleotides with the primary goal of elucidating a better understanding of the role of DNA methylation in important biological processes, such as chromosome X inactivation and carcinogenesis. The specificity of methylation-specific PCR (MSP) techniques relies on amplifying sodium bisulfite-treated DNA with primers specific to predicted sequences of unmethylated and methylated DNA within the gene of interest. In the past, unmethylated and methylated reactions were singleplex and performed in separate wells. In this paper we report a modification of the real-time quantitative multiplex MSP (QM-MSP) technique of Fackler and colleagues that can be applied to any real-time MSP experiment. Although co-amplification with multiple fluorophores is common in standard reverse transcription PCR (RT-PCR), MSP presents unique challenges both mechanistically and operationally that must be overcome in order to successfully co-amplify two methylation-specific targets. In this two-color modification, unmethylated and methylated primer/probe sets are successfully co-amplified in the same reaction using FAM- and VIC-labeled probes. Our modification decreases the cost and time of each real-time experiment by allowing increased throughput of clinical samples and by doubling either the number of genes or the number of samples that can be analyzed per real-time plate.
机译:近年来,已开发出几种基于甲基化的基于PCR的技术来鉴定和表征CpG二核苷酸的超甲基化,其主要目的是阐明人们对DNA甲基化在重要生物过程(如X染色体失活和致癌性)中的作用的更好理解。 。甲基化特异性PCR(MSP)技术的特异性依赖于用亚硫酸氢钠处理的DNA扩增引物,该引物对目标基因中未甲基化和甲基化DNA的预测序列具有特异性。过去,未甲基化和甲基化的反应是单重反应,并在单独的孔中进行。在本文中,我们报告了Fackler及其同事对实时定量多路复用MSP(QM-MSP)技术的改进,该技术可应用于任何实时MSP实验。尽管在标准逆转录PCR(RT-PCR)中常见于多种荧光团的共扩增,但是MSP在机械和操作上均呈现出独特的挑战,必须克服这些挑战才能成功共扩增两个甲基化特异性靶标。在这种双色修饰中,使用FAM和VIC标记的探针在同一反应中成功地共扩增了未甲基化和甲基化的引物/探针组。我们的改进通过增加临床样品的通量,并使每个实时板可分析的基因数量或样品数量增加一倍,从而降低了每个实时实验的成本和时间。

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