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二价阳离子介导的溶液中 DNA 交叉的差异稳定性。

Differential stability of DNA crossovers in solution mediated by divalent cations.

机构信息

Department of Chemistry and Biochemistry, University of Sussex, Brighton, BN1 9QJ, UK.

出版信息

Nucleic Acids Res. 2010 Jul;38(12):4163-72. doi: 10.1093/nar/gkq150. Epub 2010 Mar 9.

Abstract

The assembly of DNA duplexes into higher-order structures plays a major role in many vital cellular functions such as recombination, chromatin packaging and gene regulation. However, little is currently known about the molecular structure and stability of direct DNA-DNA interactions that are required for such functions. In nature, DNA helices minimize electrostatic repulsion between double helices in several ways. Within crystals, B-DNA forms either right-handed crossovers by groove-backbone interaction or left-handed crossovers by groove-groove juxtaposition. We evaluated the stability of such crossovers at various ionic concentrations using large-scale atomistic molecular dynamics simulations. Our results show that right-handed DNA crossovers are thermodynamically stable in solution in the presence of divalent cations. Attractive forces at short-range stabilize such crossover structures with inter-axial separation of helices less than 20 A. Right-handed crossovers, however, dissociate swiftly in the presence of monovalent ions only. Surprisingly, left-handed crossovers, assembled by sequence-independent juxtaposition of the helices, appear unstable even at the highest concentration of Mg(2+)studied here. Our study provides new molecular insights into chiral association of DNA duplexes and highlights the unique role divalent cations play in differential stabilization of crossover structures. These results may serve as a rational basis to understand the role DNA crossovers play in biological processes.

摘要

DNA 双链体组装成高级结构在许多重要的细胞功能中起着主要作用,如重组、染色质包装和基因调控。然而,目前对于直接 DNA-DNA 相互作用的分子结构和稳定性知之甚少,这些相互作用是这些功能所必需的。在自然界中,DNA 螺旋通过几种方式最小化双链体之间的静电排斥。在晶体中,B-DNA 通过沟-骨架相互作用形成右手交叉,或通过沟-沟并置形成左手交叉。我们使用大规模原子分子动力学模拟在不同离子浓度下评估了这些交叉的稳定性。我们的结果表明,在存在二价阳离子的情况下,右手 DNA 交叉在溶液中热力学上是稳定的。短程吸引力稳定了这些交叉结构,螺旋的轴向分离小于 20 A。然而,只有在单价离子存在下,右手交叉才会迅速解离。令人惊讶的是,由螺旋序列独立并置组装的左手交叉,即使在研究中使用的最高浓度的 Mg(2+)下,也显得不稳定。我们的研究为 DNA 双链体的手性缔合提供了新的分子见解,并强调了二价阳离子在交叉结构的差异稳定中所起的独特作用。这些结果可能为理解 DNA 交叉在生物过程中的作用提供合理的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42fe/2896531/e520b3555e8d/gkq150f1.jpg

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