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首页> 外文期刊>Macromolecules >Dynamics of Deoxyribonucleic Acid Solutions As Studied by Dielectric Relaxation Spectroscopy and Dynamic Mechanical Spectroscopy
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Dynamics of Deoxyribonucleic Acid Solutions As Studied by Dielectric Relaxation Spectroscopy and Dynamic Mechanical Spectroscopy

机译:介电弛豫谱和动态力学谱研究的脱氧核糖核酸溶液的动力学

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摘要

An investigation was carried out by dielectric relaxation Spectroscopy (DRS) and dynamic mechanical Spectroscopy (DMS) on the dynamics of aqueous solutions of deoxyribonucleic acid (DNA).Novel information is generated and presented through our use of wide temperature and frequency range in DRS and DMS measurements.Two relaxation processes were detected at temperatures below 273 K.The higher frequency,Debye-like process has an activation energy of 27 kJ/mol and is assigned to the bound water around DNA molecules.The lower frequency process is of the Cole-Cole type and has an activation energy of 55 kJ/mol,the same as that of pure ice.In the higher temperature range,encompassing the physiological condition,conductivity dominates the dielectric response.A pronounced peak in the dielectric modulus spectrum is observed,and its molecular origin is found to lie in the migration of counterions along the DNA surface.Using Manning's model,it was calculated that the subunit length over which counterions fluctuate increases from 70 nm at a concentration of 2 mg/mL to 153 nm at a concentration of 0.125 mg/mL.The results of DMS measurements of aqueous solutions of calf thymus DNA reveal a G'/G" crossover point whose frequency (omega_C) scales with concentration as omega)C approx C_(DNA)~(-2.4).The implication is that the DNA molecules behave as semiflexible polymers in aqueous solution.The temperature dependence of omega_C indicates that the breakup of the DNA base pairs and the chain melting begin at a temperature as low as 50 deg C.
机译:通过介电弛豫光谱(DRS)和动态机械光谱(DMS)对脱氧核糖核酸(DNA)水溶液的动力学进行了研究,通过在DRS和DMS测量。在低于273 K的温度下检测到两个弛豫过程。较高频率的类似Debye的过程具有27 kJ / mol的活化能,并分配给DNA分子周围的结合水。较低频率的过程是Cole -Cole型,活化能为55 kJ / mol,与纯冰相同。在较高温度范围内,在生理条件下,电导率占主导地位。在介电模量谱中观察到明显的峰,发现它的分子起源在于抗衡离子沿着DNA表面的迁移。利用曼宁模型,计算出在其上Terions的波动从浓度为2 mg / mL的70 nm增加到浓度为0.125 mg / mL的153nm。DMS测量小牛胸腺DNA水溶液的结果显示了一个G'/ G“交叉点,其频率为omega_C)的标度为oC大约为C_(DNA)〜(-2.4)的浓度,这暗示DNA分子在水溶液中表现为半柔性聚合物.omega_C的温度依赖性表明DNA碱基对和链熔化在低至50摄氏度的温度下开始。

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