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首页> 外文期刊>Clinical Biochemistry >A microarray to analyze methylation patterns of p16(Ink4a) gene 5'-CpG islands.
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A microarray to analyze methylation patterns of p16(Ink4a) gene 5'-CpG islands.

机译:一种微阵列分析p16(Ink4a)基因5'-CpG岛的甲基化模式。

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摘要

OBJECTIVES: Aberrant DNA methylation of the CpG site is among the earliest and most frequent alterations in cancer. Several studies suggest that aberrant methylation on the CpG sites of the tumor suppressor gene is closely associated with carcinogenesis. However, large-scale analysis of candidate genes has so far been hampered by the lack of high throughput approach for analyzing methylation patterns. The aim of this study was to develop a new method to analyze methylation patterns of p16(Ink4a) gene. DESIGN AND METHODS: We selected a 336 bp segment of the 5' untranslated region and the first exon of the p16(Ink4a) gene, as the target sequence, which include the most densely packed CpG fragment of the islands containing 32 CpG sites. A set of oligonucleotide probes was designed to assemble a DNA microarray to discriminate the methylation patterns of several adjacent CpG sites. RESULTS: Methylation patterns of human p16(Ink4a) gene were mapped and the results were validated by bisulphite DNA sequencing.A good reproducibility was observed in several parallel experiments. CONCLUSIONS: The methylation oligonucleotide microarray can be applied as a useful and powerful tool to map methylation patterns in multiple CpG island sites.
机译:目的:CpG位点的异常DNA甲基化是最早,最常见的癌症改变之一。多项研究表明,抑癌基因CpG位点的异常甲基化与致癌作用密切相关。但是,到目前为止,由于缺乏用于分析甲基化模式的高通量方法,因此无法进行候选基因的大规模分析。这项研究的目的是开发一种新的方法来分析p16(Ink4a)基因的甲基化模式。设计和方法:我们选择了5'非翻译区的336 bp片段和p16(Ink4a)基因的第一个外显子作为靶序列,其中包括岛上密度最高的CpG片段,其中包含32个CpG位点。设计了一组寡核苷酸探针以组装DNA微阵列,以区分几个相邻CpG位点的甲基化模式。结果:绘制了人类p16(Ink4a)基因的甲基化模式,并通过亚硫酸氢盐DNA测序验证了结果,在多个平行实验中均观察到了良好的重现性。结论:甲基化寡核苷酸微阵列可以作为一种有用而强大的工具来绘制多个CpG岛位点的甲基化模式。

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