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多价阳离子介导的阴离子聚电解质在云母上的吸附:高离子强度下原子力显微镜对DNA成像的一种解决方案。

Anionic polyelectrolyte adsorption on mica mediated by multivalent cations: a solution to DNA imaging by atomic force microscopy under high ionic strengths.

作者信息

Pastré David, Hamon Loïc, Landousy Fabrice, Sorel Isabelle, David Marie-Odile, Zozime Alain, Le Cam Eric, Piétrement Olivier

机构信息

Laboratoire Structure et Reconnaissance des Biomolécules, EA 3637, Université d'Evry, Rue du Père Jarlan, 91025 Evry Cedex, France.

出版信息

Langmuir. 2006 Jul 18;22(15):6651-60. doi: 10.1021/la053387y.

Abstract

Adsorption of DNA molecules on mica, a highly negatively charged surface, mediated by divalent or trivalent cations is considered. By analyzing atomic force microscope (AFM) images of DNA molecules adsorbed on mica, phase diagrams of DNA molecules interacting with a mica surface are established in terms of concentrations of monovalent salt (NaCl) and divalent (MgCl2) or multivalent (spermidine, cobalt hexamine) salts. These diagrams show two transitions between nonadsorption and adsorption. The first one arises when the concentration of multivalent counterions is larger than a limit value, which is not sensitive to the monovalent salt concentration. The second transition is due to the binding competition between monovalent and multivalent counterions. In addition, we develop a model of polyelectrolyte adsorption on like-charged surfaces with multivalent counterions. This model shows that the correlations of the multivalent counterions at the interface between DNA and mica play a critical role. Furthermore, it appears that DNA adsorption takes place when the energy gain in counterion correlations overcomes an energy barrier. This barrier is induced by the entropy loss in confining DNA in a thin adsorbed layer, the entropy loss in the interpenetration of the clouds of mica and DNA counterions, and the electrostatic repulsion between DNA and mica. The analysis of the experimental results provides an estimation of this energy barrier. We then discuss some important issues, including DNA adsorption under physiological conditions.

摘要

研究了由二价或三价阳离子介导的DNA分子在带高负电荷的云母表面上的吸附。通过分析吸附在云母上的DNA分子的原子力显微镜(AFM)图像,根据单价盐(NaCl)和二价(MgCl2)或多价(亚精胺、六氨合钴)盐的浓度建立了DNA分子与云母表面相互作用的相图。这些相图显示了非吸附和吸附之间的两个转变。第一个转变出现在多价抗衡离子的浓度大于一个极限值时,该极限值对单价盐浓度不敏感。第二个转变是由于单价和多价抗衡离子之间的结合竞争。此外,我们建立了一个带有多价抗衡离子的聚电解质在同电荷表面上吸附的模型。该模型表明,DNA与云母界面处多价抗衡离子的相关性起着关键作用。此外,当抗衡离子相关性中的能量增益克服一个能量势垒时,似乎会发生DNA吸附。这个势垒是由将DNA限制在薄吸附层中时的熵损失、云母和DNA抗衡离子云相互渗透时的熵损失以及DNA与云母之间的静电排斥引起的。对实验结果的分析提供了对这个能量势垒的估计。然后我们讨论了一些重要问题,包括生理条件下的DNA吸附。

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