Strategies for detecting genomic DNA methylation: a survey of US patents.

M Ahmad Chaudhry
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引用次数: 3

Abstract

DNA methylation is one of the mechanisms for the epigenetic control of gene expression. Alterations in the methylation status of genomic DNA can result in the silencing of genes. Such control is of significance for a wide range of biological processes, ranging from cellular differentiation during development, genomic imprinting and X-chromosome inactivation to the maintenance of genome stability. The cytosine in the genomic DNA is converted to 5-methylcytosine. The hypermethylation of some CpG islands in genomic DNA could result in gene silencing and hypomethylation can lead to transcription and gene expression. There has been a great interest in developing molecular techniques to analyze genomic DNA methylation at the CpG islands. The discovery that DNA treatment with sodium bisulfite converts the cytosine to uracil while keeping the 5-methycytosine intact has opened the door to a number of strategies to investigate genomic DNA methylation both at regional and global levels. A survey of recently patented methods to analyze DNA methylation indicated a range of inventions from simple PCR to high throughput based technologies. The disease diagnosis was the prominent application of DNA methylation detection for most of these methods. Future inventions will likely concentrate on genome-scale DNA methylation discovery.

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检测基因组DNA甲基化的策略:美国专利调查。
DNA甲基化是基因表达的表观遗传调控机制之一。基因组DNA甲基化状态的改变可导致基因沉默。这种控制对广泛的生物过程具有重要意义,从发育过程中的细胞分化,基因组印迹和x染色体失活到基因组稳定性的维持。基因组DNA中的胞嘧啶转化为5-甲基胞嘧啶。基因组DNA中某些CpG岛的高甲基化可导致基因沉默,而低甲基化可导致转录和基因表达。人们对开发分子技术来分析CpG岛的基因组DNA甲基化非常感兴趣。亚硫酸氢钠处理DNA将胞嘧啶转化为尿嘧啶,同时保持5-甲基胞嘧啶的完整,这一发现为在区域和全球水平上研究基因组DNA甲基化的许多策略打开了大门。一项对最近获得专利的DNA甲基化分析方法的调查显示,从简单的PCR到高通量技术的一系列发明。在这些方法中,DNA甲基化检测在疾病诊断中的应用最为突出。未来的发明可能会集中在基因组尺度的DNA甲基化发现上。
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