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首页> 外文期刊>Biopolymers: Original Research on Biomolecules and Biomolecular Assemblies >Study of the DNA/ethidium bromide interactions on mica surface by atomic force microscope: Influence of the surface friction
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Study of the DNA/ethidium bromide interactions on mica surface by atomic force microscope: Influence of the surface friction

机译:云母表面上DNA /溴化乙锭相互作用的原子力显微镜研究:表面摩擦的影响

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The influence of mica surface on DNA/ethidium bromide interactions is investigated by atomic force microscopy (AFM). We describe the diffusion mechanism of a DNA molecule on a mica surface by using a simple analytical model. It appears that the DNA diffusion on a mica surface is limited by the surface friction due to the counterion correlations between the divalent counterions condensed on both mica and DNA surfaces. We also study, the structural changes of linear DNA adsorbed on mica upon ethidium bromide binding by AFM. It turns out that linear DNA molecules adsorbed on a mica surface are unable to relieve the topological constraint upon ethidium bromide binding. In particular, strongly adsorbed molecules tend to be highly entangled, while loosely bound DNA molecules appear more extended with very few crossovers. Adsorbed DNA molecules cannot move freely on the surface because of the surface friction. Therefore, the topological constraint increases due to the ethidium bromide binding. Moreover, we show that ethidium bromide has a lower affinity for strongly bound molecules due to the topological constraint induced by the surface friction. (C) 2004 Wiley Periodicals, Inc.
机译:通过原子力显微镜(AFM)研究了云母表面对DNA /溴化乙锭相互作用的影响。我们通过使用简单的分析模型描述了DNA分子在云母表面上的扩散机制。似乎由于在云母和DNA表面上都凝聚的二价抗衡离子之间的抗衡离子相关性,云母表面上的DNA扩散受到表面摩擦的限制。我们还研究了通过AFM结合溴化乙锭对云母吸附的线性DNA的结构变化。事实证明,吸附在云母表面的线性DNA分子无法减轻对溴化乙锭结合的拓扑约束。尤其是,吸附力强的分子往往会高度纠缠,而松散结合的DNA分子则表现出更大的延伸,几乎没有交叉。由于表面摩擦,吸附的DNA分子无法在表面自由移动。因此,由于溴化乙锭的结合,拓扑约束增加。此外,我们表明,由于表面摩擦引起的拓扑约束,溴化乙锭对牢固结合的分子具有较低的亲和力。 (C)2004年Wiley Periodicals,Inc.

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