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通过模拟退火确定多胺腐胺、尸胺、亚精胺和精胺在A-和B- DNA上的结合位点。

Binding sites of the polyamines putrescine, cadaverine, spermidine and spermine on A- and B-DNA located by simulated annealing.

作者信息

Bryson K, Greenall R J

机构信息

Department of Physics, University of York, United Kingdom.

出版信息

J Biomol Struct Dyn. 2000 Dec;18(3):393-412. doi: 10.1080/07391102.2000.10506676.

Abstract

Molecular dynamics simulations with simulated annealing are performed on polyamine-DNA systems in order to determine the binding sites of putrescine, cadaverine, spermidine and spermine on A- and B-DNA. The simulations either contain no additional counterions or sufficient Na+ ions, together with the charge on the polyamine, to provide 73% neutralisation of the charges on the DNA phosphates. The stabilisation energies of the complexes indicate that all four polyamines should stabilise A-DNA in preference to B-DNA, which is in agreement with experiment in the case of spermine and spermidine, but not in the case of putrescine or cadaverine. The major groove is the preferred binding site on A-DNA of all the polyamines. Putrescine and cadaverine tend to bind to the sugar-phosphate backbone of B-DNA, whereas spermidine and spermine occupy more varied sites, including binding along the backbone and bridging both the major and minor grooves.

摘要

为了确定腐胺、尸胺、亚精胺和精胺在A - DNA和B - DNA上的结合位点,对多胺 - DNA系统进行了模拟退火分子动力学模拟。模拟中要么不包含额外的抗衡离子,要么包含足够的Na⁺离子以及多胺上的电荷,以使DNA磷酸基团上73%的电荷被中和。复合物的稳定能表明,所有四种多胺都应优先稳定A - DNA而非B - DNA,这在亚精胺和精胺的情况下与实验结果一致,但在腐胺或尸胺的情况下并非如此。大沟是所有多胺在A - DNA上的首选结合位点。腐胺和尸胺倾向于结合在B - DNA的糖 - 磷酸主链上,而亚精胺和精胺占据更多样化的位点,包括沿着主链结合以及横跨大沟和小沟。

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