首页> 外文期刊>Nucleic Acids Research >Ethanol-induced structural transitions of DNA on mica.
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Ethanol-induced structural transitions of DNA on mica.

机译:乙醇诱导的云母上DNA的结构转变。

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The effect of ethanol on the structure of DNA confined to mica in the presence of Mg2+was examined by varying the ethanol concentration and imaging the DNA by atomic force microscopy. Contour length measurements of the DNA show a transition from all-B-form at 0% ethanol to all-A-form at >25% ethanol. At intermediate ethanol concentrations, contour lengths suggest that individual molecules of air-dried DNA are trapped with mixed compositions of A-form and B-form. The relative composition depends on the ethanol concentration. Fitting the length distributions at intermediate ethanol concentrations to a simple binomial model results in an upper bound estimate for the A-form and B-form domains of approximately 54 bp in the individual molecules. In addition to length changes, the apparent persistence length of DNA decreases with increasing ethanol concentration. At high concentrations of ethanol (>20%), DNA formed several higher order structures, including flower shaped condensates and toroids.
机译:通过改变乙醇浓度并通过原子力显微镜对DNA成像,研究了乙醇对Mg2 +存在下局限于云母的DNA结构的影响。 DNA的轮廓长度测量显示从0%乙醇时的全B形式过渡到> 25%乙醇时的全A形式。在中等乙醇浓度下,轮廓长度表明风干DNA的单个分子被A型和B型的混合成分捕获。相对组成取决于乙醇浓度。将中等乙醇浓度下的长度分布拟合到简单的二项式模型可得出单个分子中约54 bp的A型和B型结构域的上限估计。除长度变化外,DNA的表观持久性长度会随着乙醇浓度的增加而减少。在高浓度乙醇(> 20%)下,DNA形成了几个更高阶的结构,包括花状的缩合物和超环面。

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