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Quantitative high-throughput analysis of DNA methylation patterns by base-specific cleavage and mass spectrometry

机译:通过碱基特异性裂解和质谱定量分析DNA甲基化模式的高通量

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Methylation is one of the major epigenetic processes pivotal to our understanding of carcinogenesis. It is now widely accepted that there is a relationship between DNA methylation, chromatin structure, and human malignancies. DNA methyfation is potentially an important clinical marker in cancer molecular diagnostics. Understanding epigenetic modifications in their biological context involves several aspects of DNA methylation analysis. These aspects include the de novo discovery of differentially methylated genes, the analysis of methylation patterns, and the determination of differences in the degree of methylation. Here we present a previously uncharacterized method for high-throughput DNA methylation analysis that utilizes MALDI-TOF mass spectrometry (MS) analysis of base-specifically cleaved amplification products. We use the IGF2/H19 region to show that a single base-specific cleavage reaction is sufficient to discover methylation sites and to determine methylation ratios within a selected target region. A combination of cleavage reactions enables the complete evaluation of all relevant aspects of DNA methylation, with most CpGs represented in multiple reactions. We successfully applied this technology under high-throughput conditions to quantitatively assess methylation differences between normal and neoplastic lung cancer tissue samples from 48 patients in 47 genes and demonstrate that the quantitative methylation results allow accurate classification of samples according to their histopathology.
机译:甲基化是对我们了解致癌作用至关重要的主要表观遗传过程之一。现在,人们普遍认为DNA甲基化,染色质结构和人类恶性肿瘤之间存在联系。 DNA甲基化可能是癌症分子诊断中重要的临床标志。了解表观遗传修饰的生物学背景涉及DNA甲基化分析的多个方面。这些方面包括从头开始发现差异甲基化基因,分析甲基化模式以及确定甲基化程度的差异。在这里,我们介绍了一种以前未鉴定的高通量DNA甲基化分析方法,该方法利用了碱基特异性裂解的扩增产物的MALDI-TOF质谱(MS)分析。我们使用IGF2 / H19区域显示单个碱基特异性裂解反应足以发现甲基化位点并确定选定目标区域内的甲基化比率。裂解反应的结合使得能够全面评估DNA甲基化的所有相关方面,其中大多数CpGs均以多重反应表示。我们成功地在高通量条件下应用了该技术,定量评估了来自48个患者的47个基因的正常和肿瘤性肺癌组织样品之间的甲基化差异,并证明了定量甲基化结果可根据其组织病理学对样品进行准确分类。

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