Scaria P V, Shafer R H
Department of Pharmaceutical Chemistry, School of Pharmacy, University of California, San Francisco 94143, USA.
Biochemistry. 1996 Aug 20;35(33):10985-94. doi: 10.1021/bi960966g.
We present a thermodynamic analysis based on differential scanning calorimetry (DSC) of three short intermolecular DNA triplexes targeted to the same DNA duplex: d(C+3T4C+3)*d- (G3A4G3).d(C3T4C3) (PYR), d(G3A4G3)*d(G3A4G3).d(C3T4C3) (PUR), and d(G3T4G3)*d(G3A4G3).d(C3T4C3) (PUR/PYR). Enthalpies, delta H, and entropies, delta S, are measured by model-free integration of the DSC curves and are compared to the same quantities determined by van't Hoff analysis of the DSC curves and, in the case of the PYR and PUR/PYR triplexes, UV melting curves as well. In the case of the PUR triplex, which exhibits monophasic melting behavior, the calorimetric delta H and the calorimetrically determined van't Hoff delta H are in excellent agreement, indicating an all-or-none transition for this triplex. For the PYR and PUR/PYR triplexes, which melt in a biphasic manner, the calorimetrically determined van't Hoff delta H values are somewhat larger than the model-independent calorimetric delta H values. In those cases, however, good agreement is found between the calorimetric delta H values and the spectrophotometrically determined van't Hoff delta H values. The calorimetrically determined delta H values, expressed per mole of triplet, for the three triplexes are 4.5, 3.8, and 2.4 kcal/mol for the PUR, PYR, and PUR/PYR triplexes, respectively. The same order of stability is observed in terms of delta G and Tm values. The high stability of the PUR triplex at neutral pH indicates that purine oligonucleotides may be the most effective at targeting duplex regions for triple helix formation in vivo.
我们基于差示扫描量热法(DSC)对靶向同一DNA双链体的三个短分子间DNA三链体进行了热力学分析:d(C +3 T4 C +3)*d-(G3 A4 G3).d(C3 T4 C3)(PYR)、d(G3 A4 G3)*d(G3 A4 G3).d(C3 T4 C3)(PUR)和d(G3 T4 G3)*d(G3 A4 G3).d(C3 T4 C3)(PUR/PYR)。通过对DSC曲线进行无模型积分来测量焓变(ΔH)和熵变(ΔS),并将其与通过对DSC曲线进行范特霍夫分析确定的相同量进行比较,对于PYR和PUR/PYR三链体,还与紫外熔解曲线确定的相同量进行比较。对于呈现单相熔解行为的PUR三链体,量热法测定的ΔH与量热法确定的范特霍夫ΔH高度吻合,表明该三链体发生了全或无的转变。对于以双相方式熔解的PYR和PUR/PYR三链体,量热法确定的范特霍夫ΔH值略大于与模型无关的量热法ΔH值。然而,在这些情况下,量热法测定的ΔH值与分光光度法确定的范特霍夫ΔH值之间吻合良好。对于这三个三链体,以每摩尔三联体表示的量热法测定的ΔH值,PUR、PYR和PUR/PYR三链体分别为4.5、3.8和2.4千卡/摩尔。在ΔG和Tm值方面观察到相同的稳定性顺序。PUR三链体在中性pH下的高稳定性表明,嘌呤寡核苷酸可能是体内靶向双链区域形成三螺旋最有效的物质。