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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Adaptive Resolution Simulation of a DNA Molecule in Salt Solution
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Adaptive Resolution Simulation of a DNA Molecule in Salt Solution

机译:盐溶液中DNA分子的自适应分辨率模拟

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We present a multiscale simulation of a DNA molecule in 1 M NaCl salt solution environment, employing the adaptive resolution simulation approach that allows the solvent molecules, i.e., water and ions, to change their resolution from atomistic to coarse-grained and vice versa adaptively on-the-fly. The region of high resolution moves together with the DNA center-of-mass so that the DNA itself is always modeled at high resolution. We show that our multiscale simulations yield a stable DNA-solution system, with statistical properties similar to those produced by the conventional all-atom molecular dynamics simulation. Special attention is given to the collective properties, such as the dielectric constant, as they provide a sensitive quality measure of our multiscale approach.
机译:我们采用1M NaCl盐溶液环境中的DNA分子进行多尺度模拟,采用自适应分辨率模拟方法,该方法允许溶剂分子(例如水和离子)在高分辨率下自适应地将其分辨率从原子性更改为粗粒,反之亦然飞。高分辨率区域与DNA质量中心一起移动,因此DNA本身始终以高分辨率建模。我们表明,我们的多尺度模拟产生了稳定的DNA溶液系统,其统计性质与常规的全原子分子动力学模拟产生的统计性质相似。特别要注意集体特性,例如介电常数,因为它们提供了我们多尺度方法的敏感质量度量。

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