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Conformation Effects of CpG Methylation on Single-Stranded DNA Oligonucleotides : Analysis of the Opioid Peptide Dynorphin-Coding Sequences

机译:CpG甲基化对单链DNA寡核苷酸的构象影响:阿片肽强啡肽编码序列的分析

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摘要

Single-stranded DNA (ssDNA) is characterized by high conformational flexibility that allows these molecules to adopt a variety of conformations. Here we used native polyacrylamide gel electrophoresis (PAGE), circular dichroism (CD) spectroscopy and nuclear magnetic resonance (NMR) spectroscopy to show that cytosine methylation at CpG sites affects the conformational flexibility of short ssDNA molecules. The CpG containing 37-nucleotide PDYN (prodynorphin) fragments were used as model molecules. The presence of secondary DNA structures was evident from differences in oligonucleotide mobilities on PAGE, from CD spectra, and from formation of A-T, G-C, and non-canonical G-T base pairs observed by NMR spectroscopy. The oligonucleotides displayed secondary structures at 4 degrees C, and some also at 37 degrees C. Methylation at CpG sites prompted sequence-dependent formation of novel conformations, or shifted the equilibrium between different existing ssDNA conformations. The effects of methylation on gel mobility and base pairing were comparable in strength to the effects induced by point mutations in the DNA sequences. The conformational effects of methylation may be relevant for epigenetic regulatory events in a chromatin context, including DNA-protein or DNA-DNA recognition in the course of gene transcription, and DNA replication and recombination when double-stranded DNA is unwinded to ssDNA.
机译:单链DNA(ssDNA)的特点是具有很高的构象柔韧性,可以使这些分子采用多种构象。在这里,我们使用了天然聚丙烯酰胺凝胶电泳(PAGE),圆二色性(CD)光谱和核磁共振(NMR)光谱来显示CpG位点的胞嘧啶甲基化会影响短ssDNA分子的构象柔性。包含37个核苷酸的PDYN(强啡肽)片段的CpG被用作模型分子。从PAGE上寡核苷酸迁移率的差异,CD光谱以及通过NMR光谱观察到的A-T,G-C和非经典G-T碱基对的形成,可以明显看出二级DNA结构的存在。寡核苷酸在4°C和37°C时显示二级结构。CpG位点的甲基化提示新构象的序列依赖性形成,或改变了不同现有ssDNA构象之间的平衡。甲基化对凝胶迁移率和碱基配对的影响在强度上与DNA序列中的点突变诱导的影响相当。甲基化的构象效应可能与染色质背景下的表观遗传调控事件有关,包括基因转录过程中的DNA-蛋白质或DNA-DNA识别,以及将双链DNA解链为ssDNA时的DNA复制和重组。

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