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乙醇 - 水和三氟乙醇 - 水溶液中NaDNA及NaDNA - 纺锤菌素纤维的机械化学研究

Mechanochemical study of NaDNA and NaDNA-netropsin fibers in ethanol-water and trifluoroethanol-water solutions.

作者信息

Song Z, Rupprecht A, Fritzsche H

机构信息

Division of Physical Chemistry, Arrhenius Laboratory, University of Stockholm, Sweden.

出版信息

Biophys J. 1995 Mar;68(3):1050-62. doi: 10.1016/S0006-3495(95)80280-8.

Abstract

Highly oriented calf-thymus NaDNA fibers, prepared by a wet-spinning method, were complexed with netropsin in ethanol-water and trifluoroethanol (TFE)-water solutions. The relative fiber length, L/L0, was measured at room temperature as a function of ethanol or TFE concentration to obtain information on the B-A conformational transition. The B-A transition point and transition cooperativity of the fibers were calculated. The binding of netropsin to NaDNA fibers was found to stabilize B form and to displace the B-A transition to higher ethanol concentration, as indicated by its elongational effect on the fiber bundles. An increased salt concentration was found to reduce netropsin binding. In netropsin-free ethanol solution, the dissociation of bound netropsin from the DNA fibers was observable. Pure B-NaDNA fibers were found to be more stable in TFE solution than in ethanol solution. This was interpreted as being due to a different steric factor and a larger polarity of TFE compared with ethanol, resulting in its smaller capacity to reduce the water activity and dielectric constant of the medium in the immediate vicinity of DNA fibers. Therefore, the effect of netropsin binding on the B-A transition of NaDNA fibers became less obvious in TFE solution. In another series of experiments, L/L0 was measured as a function of temperature to obtain information on the helix-coil transition, or melting, as well as the B-A transition of NaDNA and NaDNA-netropsin fibers. The melting temperature and helix-coil transition width were calculated from the melting curves. A phenomenological approach was used to describe the melting behavior of the fibers in and around the B-A transition region. The effect of netropsin on the melting of DNA fibers was attributed mainly to the stabilization of B-DNA and to a higher melting cooperativity in the B-DNA region.

摘要

通过湿纺法制备的高度取向的小牛胸腺钠DNA纤维,在乙醇 - 水和三氟乙醇(TFE) - 水溶液中与纺锤菌素复合。在室温下测量相对纤维长度L/L0作为乙醇或TFE浓度的函数,以获得关于B - A构象转变的信息。计算了纤维的B - A转变点和转变协同性。发现纺锤菌素与钠DNA纤维的结合稳定了B型,并将B - A转变位移到更高的乙醇浓度,这由其对纤维束的伸长效应表明。发现增加盐浓度会降低纺锤菌素的结合。在无纺锤菌素的乙醇溶液中,可以观察到结合的纺锤菌素从DNA纤维上解离。发现纯B - 钠DNA纤维在TFE溶液中比在乙醇溶液中更稳定。这被解释为是由于与乙醇相比,TFE具有不同的空间因素和更大的极性,导致其降低DNA纤维紧邻区域介质的水活性和介电常数的能力较小。因此,在TFE溶液中,纺锤菌素结合对钠DNA纤维B - A转变的影响变得不那么明显。在另一系列实验中,测量L/L0作为温度的函数,以获得关于螺旋 - 线圈转变或熔解以及钠DNA和钠DNA - 纺锤菌素纤维的B - A转变的信息。从熔解曲线计算熔解温度和螺旋 - 线圈转变宽度。采用现象学方法描述纤维在B - A转变区域及其周围的熔解行为。纺锤菌素对DNA纤维熔解的影响主要归因于B - DNA的稳定以及B - DNA区域中更高的熔解协同性。

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本文引用的文献

3
Vibrational dynamics of wet-spun films of the NaDNA-netropsin complex: A Raman and infrared study.
Phys Rev E Stat Phys Plasmas Fluids Relat Interdiscip Topics. 1993 Sep;48(3):2240-2245. doi: 10.1103/physreve.48.2240.

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