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硫原子对生物分子 2-硫代尿嘧啶和 WC 碱基对 2-硫代尿苷-腺嘌呤的几何形状和光谱的影响。第一水合壳层中水分子的影响。

Effect of the sulphur atom on geometry and spectra of the biomolecule 2-thiouracil and in the WC base pair 2-thiouridine-adenosine. Influence of water in the first hydration shell.

机构信息

a Facultad de Ciencias Químicas, Departamento de Química-Fisica1 , Universidad Complutense , Madrid 28040 , Spain.

b R.D. Foundation Group of Institutions , NH-58, Kadrabad, Modinagar, Ghaziabad , India.

出版信息

J Biomol Struct Dyn. 2018 Apr;36(5):1225-1254. doi: 10.1080/07391102.2017.1318304. Epub 2017 May 24.

Abstract

The effect of the sulphur atom on 2-thiouracil (2TU) and 2-thiouridine molecules, as compared with uracil and uridine molecules, respectively, was carried out in several environments. The predicted IR spectrum of 2TU in the isolated state was compared with that obtained for uracil molecule and with those reported experimentally in matrix isolation. Its crystal unit cell in the solid state was simulated through a tetramer form using DFT methods for the first time. The calculated Raman spectrum was compared to the experimental ones in the solid state. A linear scaling procedure was used for this task. The first hydration shell was simulated by explicit number of water molecules surrounding 2TU up to 30 and was compared with that obtained in uracil molecule. Water molecules 'distributed' around 2TU was preferred over that 'clustering', because it can better reproduce the hydration and their effects on different parameters of the molecular structure of 2TU and uracil. The total atomic charges and several calculated thermodynamic parameters were discussed. The effect of the sulphur atom on the Watson-Crick (WC) and reverse WC base pair uridine-adenosine was estimated, and the CP corrected interaction energies were calculated. 2-thiouridine has a weaker WC pair than that with uridine, although its slight higher dipole moment (μ) facilitates the interaction with the water molecules. Several helical parameters were determined.

摘要

在几种环境中,对 2-硫代尿嘧啶(2TU)和 2-硫代尿苷分子中的硫原子与尿嘧啶和尿苷分子中的相应原子进行了比较。比较了孤立状态下 2TU 的预测红外光谱与尿嘧啶分子的实验获得的光谱以及在基质隔离中报告的实验光谱。首次使用 DFT 方法通过四聚体形式模拟了其晶体单元在固态中的结构。将计算出的拉曼光谱与固态中的实验光谱进行了比较。为此任务使用了线性标度程序。通过围绕 2TU 明确数量的水分子模拟了第一层水合壳,直至 30 个,并将其与在尿嘧啶分子中获得的进行了比较。围绕 2TU 分布的水分子比聚类水分子更好,因为它可以更好地再现水合作用及其对 2TU 和尿嘧啶分子结构不同参数的影响。讨论了总原子电荷和几个计算的热力学参数。估计了硫原子对 Watson-Crick(WC)和反向 WC 碱基对尿苷-腺嘌呤的影响,并计算了 CP 校正的相互作用能。2-硫代尿苷与尿苷形成的 WC 碱基对较弱,尽管其稍高的偶极矩(μ)有利于与水分子的相互作用。确定了几个螺旋参数。

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