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Rapid and quantitative method of allele-specific DNA methylation analysis

机译:等位基因特异性DNA甲基化分析的快速定量方法

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摘要

Several biological phenomena depend on differential methylation of chromosomal strands. While understanding the role of these processes requires information on allele-specific methylation, the available methodologies are not quantitative or labor-intensive. We describe a novel, rapid method to quantitate allele-specific DNA methylation based on the combination of bisulfite PCR and Pyrosequencing. In this method, DNA is first treated with sodium bisulfite, which converts cytosine but not 5-methylcytosine to uracil. Genes of interest are subsequently amplified using PCR. Allele-specific methylation can then be determined by pyrosequencing each allele individually using sequencing primers that incorporate single nucleotide polymorphisms (SNPs) that allow differentiation between the two parental alleles. This allele-specific methylation methodology can potentially afford quantitative analyses relevant to the regulation of X chromosome inactivation, allele-specific expression of genes in the immune system, repetitive elements, and genomic imprinting. As an illustration of our new method, we quantitated allele-specific methylation of the differentially methylated region of the H19 gene, which is imprinted. Although we could reliably determine allele-specific methylation with our technique, additional studies will be required to confirm the ability of our assay to measure loss of imprinting.
机译:几种生物学现象取决于染色体链的差异甲基化。虽然了解这些过程的作用需要有关等位基因特异性甲基化的信息,但可用的方法不是定量的或劳动密集型的。我们描述了一种基于亚硫酸氢盐PCR和焦磷酸测序相结合的定量等位基因特异性DNA甲基化的新型快速方法。在这种方法中,首先用亚硫酸氢钠处理DNA,亚硫酸氢钠将胞嘧啶而不是5-甲基胞嘧啶转化为尿嘧啶。随后使用PCR扩增目的基因。然后,可以通过使用引入单个核苷酸多态性(SNP)的测序引物分别对每个等位基因进行焦磷酸测序来确定等位基因特异性的甲基化,该测序引物允许在两个亲本等位基因之间进行区分。这种等位基因特异性甲基化方法可以潜在地提供与X染色体失活调节,免疫系统中基因的等位基因特异性表达,重复元件和基因组印迹相关的定量分析。为了说明我们的新方法,我们对印迹的H19基因差异甲基化区域的等位基因特异性甲基化进行了定量。尽管我们可以使用我们的技术可靠地确定等位基因特异性甲基化,但仍需要进行其他研究以确认我们的测定方法能够测量印迹损失。

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