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首页> 外文期刊>Journal of Molecular Modeling >The effect of salt concentration on DNA conformation transition: a molecular-dynamics study
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The effect of salt concentration on DNA conformation transition: a molecular-dynamics study

机译:盐浓度对DNA构象转变的影响:分子动力学研究

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We performed three 3-ns molecular dynamics simulations of d(CGCGAATTCGCG)2 using the AMBER 8 package to determine the effect of salt concentration on DNA conformational transitions. All the simulations were started with A-DNA, with different salt concentrations, and converged with B-DNA with similar conformational parameters. However, the dynamic processes of the three MD simulations were very different. We found that the conformation transition was slow in the solution with higher salt concentration. To determine the cause of this retardation, we performed three additional 1.5-ns simulations starting with B-DNA and with the salt concentrations corresponding to the simulations mentioned above. However, astonishingly, there was no delayed conformation evolution found in any of the three simulations. Thus, our simulation conclusion is that higher salt concentrations slows the A → B conformation transition, but have no effect on the final stable structure.
机译:我们使用AMBER 8软件包对d(CGCGAATTCGCG)2 进行了3次3 ns分子动力学模拟,以确定盐浓度对DNA构象转变的影响。所有模拟均从具有不同盐浓度的A-DNA开始,并与具有相似构象参数的B-DNA融合。但是,三个MD仿真的动态过程非常不同。我们发现高盐浓度的溶液中构象转变缓慢。为了确定这种延迟的原因,我们从B-DNA以及与上述模拟相对应的盐浓度进行了另外三个1.5 ns模拟。但是,令人惊讶的是,在这三个模拟中都没有发现延迟的构象演变。因此,我们的模拟结论是较高的盐浓度会减慢A→B的构象转变,但对最终的稳定结构没有影响。

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