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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Distribution of Residence Time of Water around DNA Base Pairs: Governing Factors and the Origin of Heterogeneity
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Distribution of Residence Time of Water around DNA Base Pairs: Governing Factors and the Origin of Heterogeneity

机译:DNA碱基对周围水的停留时间分布:控制因素和异质性起源

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Water dynamics in the solvation shell around biomolecules plays a vital role in their stability, function, and recognition processes. Although extensively studied through various experimental and computational methods, dynamical time scales of water near DNA is highly debated. The residence time of water is one such dynamical quantity that has been probed rarely around DNA using computational methods. Moreover, the effect of local DNA sequence variation in water residence time has also not been addressed. Using 20 DNA systems with different sequences, we capture here the mean residence time (MRT) of water molecules around 360 different sites in the major and minor grooves of DNA. Thus, we show that a distribution of time scales exists even for a regular structure of DNA, reflecting the effect of chemistry, topography, and other factors governing dynamics of water. We used the stable state picture (SSP) formalism to calculate MRT that avoids the effect of transient recrossing. Results obtained from simulations agree well with experiments done on a few specific systems at a similar temperature. Most importantly, we find that although the groove width and depth influence water time scale, MRT of water is always longer in the middle of the DNA, in agreement with NMR experiments. We propose a simple kinetic model of water escape from DNA where water molecules move along the DNA and perpendicular to it in both the first and second solvation shell before it escapes to bulk. We show that this simple kinetic model captures both the time scale and the position dependence of MRT of water around DNA. This study thus portrays the origin and a measure of heterogeneity in water dynamics around DNA and provides a fresh perspective in the ongoing debate on water dynamical time scales around DNA.
机译:生物分子周围的溶剂化壳中的水动力学在其稳定性,功能和识别过程中起着至关重要的作用。尽管已通过各种实验和计算方法进行了广泛研究,但DNA附近水的动态时间尺度仍受到广泛争议。水的停留时间就是这样一种动态量,很少使用计算方法在DNA周围探测到。而且,还没有解决局部DNA序列变化对水停留时间的影响。我们使用20个具有不同序列的DNA系统,在这里捕获DNA的主要和次要凹槽中360个不同位点附近的水分子的平均停留时间(MRT)。因此,我们表明,即使对于DNA的规则结构,也存在时间尺度的分布,反映了化学,地形和控制水动力学的其他因素的影响。我们使用稳定状态图(SSP)形式来计算MRT,从而避免了瞬态交叉的影响。从模拟获得的结果与在一些特定系统上以相似温度进行的实验非常吻合。最重要的是,我们发现,尽管凹槽的宽度和深度会影响水的时间尺度,但与NMR实验相一致,水的MRT在DNA的中间始终更长。我们提出了一个简单的动力学模型,即从DNA逸出的水分子在第一个和第二个溶剂化壳中沿着DNA并垂直于其移动,然后逸出大量。我们表明,这种简单的动力学模型捕获了DNA周围水的MRT的时间尺度和位置依赖性。因此,这项研究描绘了围绕DNA的水动力学的起源和异质性度量,并为正在进行的围绕DNA的水动力学时间尺度的争论提供了新的视角。

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