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Harmonic vibrations and thermodynamic stability of a DNA oligomer in monovalent salt solution.

机译:DNA低聚物在单价盐溶液中的谐波振动和热力学稳定性。

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摘要

We compute the full harmonic vibrational spectrum and eigenmodes of a DNA oligomer, d(C-G)3, in optimized B and Z conformations in various ionic environments (0.01-5.0 M NaCl). The statistical interactions of DNA with the diffuse ionic cloud surrounding it in solution are approximately represented within the potential of mean force framework. The lowest eigenfrequency of the B conformation is found to drastically decrease with increased NaCl concentration. This suggests that a soft mode mechanism may be a precursor for the B-to-Z conversion. The free energy balance governing the B-Z isomerization of d(C-G)3 is dominated by the solvent-averaged effective phosphate-phosphate interactions due to substantial cancelations between the much larger intramolecular energy contributions.
机译:我们在各种离子环境(0.01-5.0 M NaCl)中以优化的B和Z构型计算DNA低聚物d(C-G)3的全谐波振动谱和本征模。 DNA与溶液中围绕它的弥漫性离子云的统计相互作用大致表示在平均力框架的潜力之内。发现B构型的最低本征频率随着NaCl浓度的增加而急剧降低。这表明软模式机制可能是B到Z转换的先驱。 d(C-G)3的B-Z异构化的自由能平衡受溶剂平均有效磷酸盐-磷酸盐相互作用的支配,这是由于较大的分子内能量贡献之间的基本抵消。

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