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分子内DNA三链螺旋的热力学:热诱导结构转变的pH值和盐依赖性的量热法和光谱研究

Thermodynamics of an intramolecular DNA triple helix: a calorimetric and spectroscopic study of the pH and salt dependence of thermally induced structural transitions.

作者信息

Plum G E, Breslauer K J

机构信息

Department of Chemistry, Rutgers State University of New Jersey, New Brunswick 08903, USA.

出版信息

J Mol Biol. 1995 May 5;248(3):679-95. doi: 10.1006/jmbi.1995.0251.

Abstract

We have characterized thermodynamically the melting transitions of a DNA 31-mer oligonucleotide (5'-GAAGAGGTTTTTCCTCTTCTTTTTCTTCTCC-3') which is designed to fold into an intramolecular triple helix. The first 19 residues fold back on themselves to form an antiparallel Watson-Crick hairpin duplex with a T5 loop. The 3'-terminal seven residues, which are connected to the Watson-Crick hairpin duplex by a second T5 loop, form Hoogsteen interactions in the major groove of the Watson-Crick hairpin. From ultraviolet (UV) melting studies we find that the 31-mer exhibits either one or two transitions, depending on solution conditions. We use pH- and temperature-dependent circular dichroism (CD) to assign the initial and final states associated with each transition. We find that the disruption of the Hoogsteen hairpin is accompanied by a release of protons and an uptake of sodium ions while the disruption of the Watson-Crick hairpin is accompanied by a release of sodium ions with no change in protonation state. From these data, we construct a phase diagram for this intramolecular DNA triple helix as a function of pH, sodium ion concentration, and temperature. We characterize the energetics of each transition using a van't Hoff analysis and differential scanning calorimetry (DSC). Significantly, the DSC data provide a model-independent thermodynamic characterization of the thermally induced transitions of this triplex. By combining the spectroscopic and calorimetric data, we develop a semi-empirical model which describes the state of the 31-mer as a function of pH, sodium ion concentration, and temperature. With this model we successfully predict characteristics of the 31-mer, which are beyond the data which are used in establishing the model (for example, the salt dependence of the apparent pKa of the Hoogsteen strand). This semi-empirical model may serve as a prototype for developing a method to predict the phase diagrams of intramolecular triple helix systems.

摘要

我们已对一段DNA 31聚体寡核苷酸(5'-GAAGAGGTTTTTCCTCTTCTTTTTCTTCTCC-3')的解链转变进行了热力学表征,该寡核苷酸被设计折叠成分子内三链螺旋。前19个残基自身回折形成一个带有T5环的反平行沃森-克里克发夹双链体。3'端的七个残基通过第二个T5环与沃森-克里克发夹双链体相连,在沃森-克里克发夹的大沟中形成Hoogsteen相互作用。通过紫外(UV)解链研究,我们发现31聚体根据溶液条件表现出一个或两个转变。我们使用pH和温度依赖性圆二色性(CD)来确定与每个转变相关的初始和最终状态。我们发现,Hoogsteen发夹的破坏伴随着质子的释放和钠离子的摄取,而沃森-克里克发夹的破坏伴随着钠离子的释放,质子化状态没有变化。根据这些数据,我们构建了该分子内DNA三链螺旋的相图,作为pH、钠离子浓度和温度的函数。我们使用范特霍夫分析和差示扫描量热法(DSC)来表征每个转变的能量学。值得注意的是,DSC数据提供了该三链体热诱导转变的与模型无关的热力学表征。通过结合光谱和量热数据,我们开发了一个半经验模型,该模型将31聚体的状态描述为pH、钠离子浓度和温度的函数。利用这个模型,我们成功地预测了31聚体的特性,这些特性超出了用于建立模型的数据范围(例如,Hoogsteen链表观pKa的盐依赖性)。这个半经验模型可以作为开发一种预测分子内三链螺旋系统相图方法的原型。

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