Ladbury J E, Sturtevant J M, Leontis N B
Department of Chemistry, Yale University, New Haven, Connecticut 06520.
Biochemistry. 1994 Jun 7;33(22):6828-33. doi: 10.1021/bi00188a011.
Isothermal titration calorimetry (ITC) is used to study the thermodynamics of assembly of the three DNA oligonucleotides S1 (5'-GCCTGCCACCGC), S2 (5'-GCGGTGCGTCCG), and S3AA (5'-CGGACGAAGCAGGC) to form a three-way junction (TWJ) complex consisting of three double-helical arms radiating from a junction region having two unpaired adenosines in one strand (S3AA). The thermodynamics of assembly were measured for three different orders of addition of the component oligonucleotides at four temperatures between 10 and 25 degrees C. At each temperature studied, the overall values of delta H, delta S degrees, and delta G degrees for assembly of the complex from the component single strands were found to be independent of the order of addition. The enthalpy of binding, delta H, was found to be linearly dependent on temperature. From the temperature dependence of delta H, the change in heat capacity delta Cp, for the overall assembly of three strands to form the junction complex was calculated and found to be -1.6 kcal mol-1K-1. This work represents the first attempt to evaluate the thermodynamics of DNA TWJ formation by ITC.
等温滴定量热法(ITC)用于研究三种DNA寡核苷酸S1(5'-GCCTGCCACCGC)、S2(5'-GCGGTGCGTCCG)和S3AA(5'-CGGACGAAGCAGGC)组装形成三链交界(TWJ)复合物的热力学,该复合物由从一个在一条链中具有两个未配对腺苷的交界区域辐射出的三个双螺旋臂组成(S3AA)。在10至25摄氏度之间的四个温度下,对组分寡核苷酸的三种不同添加顺序进行了组装热力学测量。在所研究的每个温度下,发现由单链组分组装复合物的ΔH、ΔS°和ΔG°的总值与添加顺序无关。结合焓ΔH被发现与温度呈线性相关。根据ΔH对温度的依赖性,计算了三条链组装形成交界复合物的总热容变化ΔCp,结果为-1.6 kcal mol-1K-1。这项工作是首次尝试通过ITC评估DNA TWJ形成的热力学。