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首页> 外文期刊>Epigenetics: official journal of the DNA Methylation Society >Assessing combined methylation-sensitive high resolution melting and pyrosequencing for the analysis of heterogeneous DNA methylation
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Assessing combined methylation-sensitive high resolution melting and pyrosequencing for the analysis of heterogeneous DNA methylation

机译:评估甲基化敏感的高分辨率解链和焦磷酸测序结合以分析异质DNA甲基化

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摘要

Heterogeneous DNA methylation leads to difficulties in accurate detection and quantification of methylation. Methylation-sensitive high resolution melting (MS-HRM) is unique among regularly used methods for DNA methylation analysis in that heterogeneous methylation can be readily identified, although not quantified, by inspection of the melting curves. Bisulfite pyrosequencing has been used to estimate the level of heterogeneous methylation by quantifying methylation levels present at individual CpG dinucleotides. Sequentially combining the two methodologies using MS-HRM to screen the amplification products prior to bisulfite pyrosequencing would be advantageous. This would not only replace the quality control step using agarose gel analysis prior to the pyrosequencing step but would also provide important qualitative information in its own right. We chose to analyze DAPK1 as it is an important tumor suppressor gene frequently heterogeneously methylated in a number of malignancies, including chronic lymphocytic leukemia (CLL). A region of the DAPK1 promoter was analyzed in ten CLL samples by MS-HRM. By using a biotinylated primer, bisulfite pyrosequencing could be used to directly analyze the samples. MS-HRM revealed the presence of various extents of heterogeneous DAPK1 methylation in all CLL samples. Further analysis of the biotinylated MS-HRM products by bisulfite pyrosequencing provided quantitative information for each CpG dinucleotide analyzed, and confirmed the presence of heterogeneous DNA methylation. Whereas each method could be used individually, MS-HRM and bisulfite pyrosequencing provided complementary information for the assessment of heterogeneous methylation.
机译:异构DNA甲基化会导致难以准确检测和定量甲基化。甲基化敏感的高分辨率熔解(MS-HRM)在常规用于DNA甲基化分析的方法中是独特的,因为通过检测熔解曲线,即使不定量也可以很容易地识别出异质甲基化。亚硫酸氢盐焦磷酸测序已用于通过量化单个CpG二核苷酸中存在的甲基化水平来估计异质甲基化水平。在亚硫酸氢盐焦磷酸测序之前使用MS-HRM顺序组合这两种方法来筛选扩增产物将是有利的。这不仅可以取代焦磷酸测序步骤之前使用琼脂糖凝胶分析进行的质量控制步骤,而且可以自己提供重要的定性信息。我们选择分析DAPK1,因为它是重要的抑癌基因,在许多恶性肿瘤(包括慢性淋巴细胞性白血病(CLL))中经常异质甲基化。通过MS-HRM在十个CLL样本中分析了DAPK1启动子的区域。通过使用生物素化的引物,亚硫酸氢盐焦磷酸测序可用于直接分析样品。 MS-HRM揭示了在所有CLL样品中均存在不同程度的异源DAPK1甲基化。亚硫酸氢盐焦磷酸测序对生物素化MS-HRM产物的进一步分析提供了每个分析的CpG二核苷酸的定量信息,并证实了异质DNA甲基化的存在。尽管每种方法可以单独使用,但MS-HRM和亚硫酸氢盐焦磷酸测序为评估异质甲基化提供了补充信息。

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