Methylated site display (MSD)-AFLP, a sensitive and affordable method for analysis of CpG methylation profiles

IF 2.946 Q3 Biochemistry, Genetics and Molecular Biology BMC Molecular Biology Pub Date : 2017-03-09 DOI:10.1186/s12867-017-0083-2
Toshiki Aiba, Toshiyuki Saito, Akiko Hayashi, Shinji Sato, Harunobu Yunokawa, Toru Maruyama, Wataru Fujibuchi, Hisaka Kurita, Chiharu Tohyama, Seiichiroh Ohsako
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引用次数: 12

Abstract

It has been pointed out that environmental factors or chemicals can cause diseases that are developmental in origin. To detect abnormal epigenetic alterations in DNA methylation, convenient and cost-effective methods are required for such research, in which multiple samples are processed simultaneously. We here present methylated site display (MSD), a unique technique for the preparation of DNA libraries. By combining it with amplified fragment length polymorphism (AFLP) analysis, we developed a new method, MSD-AFLP.

Methylated site display libraries consist of only DNAs derived from DNA fragments that are CpG methylated at the 5′ end in the original genomic DNA sample. To test the effectiveness of this method, CpG methylation levels in liver, kidney, and hippocampal tissues of mice were compared to examine if MSD-AFLP can detect subtle differences in the levels of tissue-specific differentially methylated CpGs. As a result, many CpG sites suspected to be tissue-specific differentially methylated were detected. Nucleotide sequences adjacent to these methyl-CpG sites were identified and we determined the methylation level by methylation-sensitive restriction endonuclease (MSRE)-PCR analysis to confirm the accuracy of AFLP analysis. The differences of the methylation level among tissues were almost identical among these methods. By MSD-AFLP analysis, we detected many CpGs showing less than 5% statistically significant tissue-specific difference and less than 10% degree of variability. Additionally, MSD-AFLP analysis could be used to identify CpG methylation sites in other organisms including humans.

MSD-AFLP analysis can potentially be used to measure slight changes in CpG methylation level. Regarding the remarkable precision, sensitivity, and throughput of MSD-AFLP analysis studies, this method will be advantageous in a variety of epigenetics-based research.

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甲基化位点显示(MSD)-AFLP,一个敏感和负担得起的方法来分析CpG甲基化谱
有人指出,环境因素或化学物质可引起起源于发育的疾病。为了检测DNA甲基化异常的表观遗传改变,这类研究需要方便和经济的方法,其中多个样品同时处理。我们在此提出甲基化位点展示(MSD),一种独特的DNA文库制备技术。将其与扩增片段长度多态性(AFLP)分析相结合,建立了一种新的方法MSD-AFLP。甲基化位点展示文库仅包括来自原始基因组DNA样本中5 '端CpG甲基化的DNA片段的DNA。为了验证该方法的有效性,我们比较了小鼠肝脏、肾脏和海马组织中的CpG甲基化水平,以检验MSD-AFLP是否可以检测到组织特异性差异甲基化CpG水平的细微差异。结果,许多疑似组织特异性差异甲基化的CpG位点被检测到。我们鉴定了这些甲基化cpg位点附近的核苷酸序列,并通过甲基化敏感限制性内切酶(MSRE)-PCR分析确定了甲基化水平,以确认AFLP分析的准确性。不同方法的组织间甲基化水平差异几乎相同。通过MSD-AFLP分析,我们检测到许多CpGs在统计学上的显著性组织特异性差异小于5%,变异性程度小于10%。此外,MSD-AFLP分析可用于鉴定包括人类在内的其他生物的CpG甲基化位点。MSD-AFLP分析可以潜在地用于测量CpG甲基化水平的微小变化。鉴于MSD-AFLP分析研究的精密度、灵敏度和通量显著,该方法将有利于各种基于表观遗传学的研究。
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来源期刊
BMC Molecular Biology
BMC Molecular Biology 生物-生化与分子生物学
CiteScore
4.80
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: BMC Molecular Biology is an open access journal publishing original peer-reviewed research articles in all aspects of DNA and RNA in a cellular context, encompassing investigations of chromatin, replication, recombination, mutation, repair, transcription, translation and RNA processing and function.
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