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首页> 外文期刊>The Journal of Chemical Physics >III.Molecular dynamics simulations of DNA in water and theoretical calculations of the two-dimensional vibrational spectra:Vibrational dynamics of DNA.
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III.Molecular dynamics simulations of DNA in water and theoretical calculations of the two-dimensional vibrational spectra:Vibrational dynamics of DNA.

机译:III.DNA在水中的分子动力学模拟和二维振动光谱的理论计算:DNA的振动动力学。

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摘要

A theoretical description of the vibrational excitons in DNA is presented by using the vibrational basis mode theory developed in Papers I and II.The parameters obtained from the density functional theory calculations,such as vibrational coupling constants and basis mode frequencies,are used to numerically simulate two-dimensional (2D) IR spectra of dG_n: dC_n and dA_n: dT_n double helices with n varying from 1 to 10.From the molecular dynamics simulations of dG_5C_5 and dA_5T_5 double helices in D_2O solution,it is found that the thermally driven internal motions of these systems in an aqueous solution do not induce strong fluctuations of basis mode frequencies nor vibrational couplings.In order to construct the two-exciton Hamiltonian,the vibrational anharmonicities of eight basis modes are obtained by carrying out B3LYP/6-31G* calculations for the nine basis modes.The simulated 2D IR spectra of dG_n: dC_n double helix in D_2O solution are directly compared with closely related experimental results.The 2D IR spectra of dG_n: dC_n and dA_n: dT_n are found to be weakly dependent on the number of base pairs.The present work demonstrates that the computational procedure combining quantum chemistry calculation and molecular dynamics simulation methods can be of use to predict 2D IR spectra of nucleic acids in solutions.
机译:利用论文I和II提出的振动基模理论,对DNA中的振动激子进行了理论描述。从密度泛函理论计算中获得的参数(如振动耦合常数和基模频率)用于数值模拟dG_n:dC_n和dA_n:dT_n的二维(2D)红外光谱,n在1到10之间变化这些系统在水溶液中不会引起基模频率的强烈波动,也不会引起振动耦合。为了构造二激子哈密顿量,通过对B3LYP / 6-31G *进行计算,获得了八个基模的振动非谐性。直接比较了D_2O溶液中dG_n:dC_n双螺旋的二维二维红外光谱实验结果:发现dG_n:dC_n和dA_n:dT_n的二维红外光谱与碱基对的数量几乎无关。预测溶液中核酸的二维红外光谱。

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