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盐对凝聚鱼精蛋白-DNA 组装体的影响:阴离子结合和吸引力减弱。

Salt effects on condensed protamine-DNA assemblies: anion binding and weakening of attraction.

机构信息

Department of Chemistry, University of Kentucky, Lexington, Kentucky 40506-0055, United States.

出版信息

J Phys Chem B. 2011 Oct 20;115(41):11888-94. doi: 10.1021/jp203834z. Epub 2011 Sep 23.

Abstract

Using osmotic stress coupled with X-ray scattering, we have directly examined the salt sensitivity of the intermolecular forces between helices in condensed protamine-DNA arrays. Thermodynamic forces are measured from the dependence of DNA helical interaxial spacings on external salt concentration or the osmotic pressure applied by neutral polymer solutions in equilibrium with the condensed phase. Force curves of salmon protamine-DNA condensates are highly dependent on salt species and concentration, indicating salt binding to protamine-DNA complexes. This dependence of the forces on salt species follows the Hofmeister series for anions. Chaotropic anions bind more tightly to protamine-DNA arrays than kosmotropic anions, thus more greatly disrupting the attractive thermodynamic forces. Variations with cation type are small compared with those observed for anions. Further, osmotic stress is used to estimate the number of ions bound in the condensed phase through a Gibbs-Duhem relationship. We estimate that at equilibrium, ∼1 Br(-) is bound per protamine molecule at 200 mM NaBr concentration. Remarkably, this one bound anion results in a change of ∼12% in the surface-to-surface distance between DNA helices. Potential biological implications of this attractive force salt sensitivity are discussed.

摘要

利用渗透压与 X 射线散射,我们直接研究了凝聚鱼精蛋白-DNA 结构中螺旋间相互作用的盐敏感性。通过 DNA 螺旋间轴向间距对外加盐浓度或与凝聚相平衡的中性聚合物溶液渗透压的依赖,来测量热力学力。鲑鱼鱼精蛋白-DNA 凝聚物的力曲线高度依赖于盐种类和浓度,表明盐与鱼精蛋白-DNA 复合物结合。这种力对盐种类的依赖性符合阴离子的豪夫迈斯特序列。离液盐比亲液盐更紧密地结合鱼精蛋白-DNA 结构,因此更强烈地破坏了吸引力热力学力。与阴离子相比,阳离子类型的变化较小。此外,渗透压通过吉布斯-杜恒关系用于估计凝聚相中结合的离子数量。我们估计,在 200mMNaBr 浓度下,平衡时每个鱼精蛋白分子结合约 1 个 Br(-)。值得注意的是,这种结合的阴离子导致 DNA 螺旋之间的表面到表面距离变化约 12%。讨论了这种吸引力盐敏感性的潜在生物学意义。

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Attractive forces between cation condensed DNA double helices.阳离子凝聚态DNA双螺旋之间的吸引力。
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