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DNA 热稳定性取决于溶剂黏度。

DNA Thermal Stability Depends on Solvent Viscosity.

机构信息

Department of Biochemistry , University of Iowa , 51 Newton Road , Iowa City , Iowa 52242 , United States.

出版信息

J Phys Chem B. 2019 May 2;123(17):3649-3657. doi: 10.1021/acs.jpcb.9b01217. Epub 2019 Apr 15.

Abstract

Capillary electrophoresis has been used to measure the thermal stability of small DNA hairpins in solutions containing 0.3 M cation, comparing the results observed in Na and NH with those observed in solutions containing various tetraalkylammonium ions. The midpoint melting temperatures of the hairpins decreased nonlinearly with cation radius but linearly with solvent viscosity, suggesting that the reversible melting transition involves DNA migration through the solvent to find stable base-pairing partners. The normalized melting temperatures increased linearly with the inverse viscosity of the solvent and agreed with values calculated from literature data for another small DNA hairpin, a small RNA duplex, and sonicated calf thymus DNA in tetraalkylammonium ion solutions. The normalized melting temperatures calculated from literature data for poly(A)·poly(U) and two proteins, ribonuclease and lysozyme, in tetraalkylammonium ion solutions also increased linearly with inverse solvent viscosity. By contrast, the normalized melting temperatures calculated from literature data for DNA in solutions containing ethylene glycol or glycerol to modify the viscosity increased linearly with the logarithm of inverse solvent viscosity, not the first power of inverse solvent viscosity.

摘要

毛细管电泳已被用于测量含有 0.3 M 阳离子的溶液中小 DNA 发夹的热稳定性,将在 Na 和 NH 中观察到的结果与在含有各种四烷基铵离子的溶液中观察到的结果进行比较。发夹的中点融解温度随阳离子半径呈非线性降低,但随溶剂粘度呈线性降低,表明可逆的融解转变涉及 DNA 通过溶剂迁移以找到稳定的碱基配对伙伴。归一化融解温度与溶剂的倒数粘度呈线性增加,并与在四烷基铵离子溶液中另一个小 DNA 发夹、小 RNA 双链体和超声小牛胸腺 DNA 的文献数据计算的值一致。从文献数据计算的在四烷基铵离子溶液中聚(A)·聚(U)和两种蛋白质(核糖核酸酶和溶菌酶)的归一化融解温度也随溶剂粘度的倒数线性增加。相比之下,从含有乙二醇或甘油以改变粘度的溶液中的 DNA 的文献数据计算的归一化融解温度随溶剂粘度的倒数对数线性增加,而不是随溶剂粘度的倒数的第一功率增加。

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