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在含有聚乙二醇的溶液中,甲基化DNA呈现紧密形态。

A compact from of methylated DNA is solutions containing poly (ethylene glycol).

作者信息

Akimenko N M, Burckhardt G, Kadykov V A, Avakian K A, Evdokimov Y M, Varshavsky Y M

出版信息

Nucleic Acids Res. 1977 Oct;4(10):3665-76. doi: 10.1093/nar/4.10.3665.

Abstract

Some peculiarities of compactization of double-stranded DNA molecules containing methylated nitrogen bases have been studied in water-salt solutions of PEG. It is shown that the methylation of N7-atoms of guanyl residues in original DNA molecules does not prevent the formation of DNA compact particles, but results in a decrease of the amplitude of the negative band in the CD spectrum of compact particles. The influence of N7-guanine methylation on the shape of the CD spectrum being the greater, the lower is the concentration of PEG. The dependence of the negative band amplitude in the CD spectrum on the content of methylated guanyl residues is practically the same for low-molecular weight DNA's from different sources. The observed decrease in the negative band amplitude is interpreted as a result of alterration of guanyl residue orientation relative to the helix axis which leads to diminished optical activity of the "microcrystalline" domains of compact particles. The evidence obtained suggests that changes in the secondary structure of DNA lead to considerable difference between CD spectra of compact particles of methlated DNA and psi-form of DNA. (The changes in the CD spectrum of the DNA compact particles occur also as a result of methylation of C5-atoms of cytosine residues). It is suggested that the negative band in the CD spectrum can be used a criterion for detection of negligible alterations in the DNA secondary structure.

摘要

在聚乙二醇(PEG)的水盐溶液中,对含有甲基化氮碱基的双链DNA分子的致密化一些特性进行了研究。结果表明,原始DNA分子中鸟嘌呤残基N7原子的甲基化并不妨碍DNA致密颗粒的形成,但会导致致密颗粒圆二色光谱(CD光谱)中负带振幅的降低。PEG浓度越低,N7-鸟嘌呤甲基化对CD光谱形状的影响越大。不同来源的低分子量DNA,CD光谱中负带振幅对甲基化鸟嘌呤残基含量的依赖性实际上是相同的。观察到的负带振幅降低被解释为鸟嘌呤残基相对于螺旋轴方向改变的结果,这导致致密颗粒“微晶”结构域的光学活性降低。所获得的证据表明,DNA二级结构的变化导致甲基化DNA致密颗粒和ψ-DNA形式的CD光谱之间存在显著差异。(DNA致密颗粒的CD光谱变化也是由于胞嘧啶残基C5原子的甲基化引起的)。有人提出,CD光谱中的负带可作为检测DNA二级结构微小变化的标准。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7041/342681/6ab3bbec4eec/nar00483-0385-a.jpg

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